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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Форма поиска

Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 28230. Отображено 100.
10-01-2017 дата публикации

Вихревой пылеуловитель

Номер: RU0000167446U1

Полезная модель предназначена для мокрой инерционной очистки спутных закрученных газовых потоков и может применяться в горной, химической, текстильной промышленности.Техническим результатом полезной модели является повышение эффективности работы пылеулавливающего устройства, повышение качества очищаемого воздуха и снижение энергозатрат при очистке запыленного воздуха.Технический результат достигается тем, что в предложенном вихревом пылеуловителе обеспечивается повышение эффективности процесса пылеулавливания путем снижения уноса пыли за счет предварительного орошение потоков запыленного воздуха, поступающего в пылеуловитель, что приводит к укрупнению пылевых частиц, сепарация которых значительно увеличивается. Кроме этого орошающая жидкость, оседая на внутренней поверхности сепарационной камеры, препятствует отскоку пылевых частиц от сепарационной камеры и способствует их улавливанию и смыванию в сборный бункер.Использование приспособления в виде низкоскоростной трубы Вентури в вихревом пылеуловителе позволяет снизить энергозатраты при очистке запыленного воздуха. 4 з.п. ф-лы, 2 илл. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 167 446 U1 (51) МПК B04C 3/06 (2006.01) B01D 47/06 (2006.01) B01D 45/12 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ТИТУЛЬНЫЙ ЛИСТ ОПИСАНИЯ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2016118723, 13.05.2016 (24) Дата начала отсчета срока действия патента: 13.05.2016 Дата регистрации: (73) Патентообладатель(и): Федеральное государственное бюджетное образовательное учреждение высшего образования "Самарский государственный технический университет" (RU) Приоритет(ы): (22) Дата подачи заявки: 13.05.2016 (45) Опубликовано: 10.01.2017 Бюл. № 1 1 6 7 4 4 6 R U (57) Формула полезной модели 1. Вихревой пылеуловитель, содержащий цилиндрическую сепарационную камеру с верхним и нижним каналами подачи воздуха, состоящими из последовательно расположенных подводящего воздуховода, конфузора, горловины, диффузора и патрубка ввода воздуха, в ...

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16-11-2017 дата публикации

Мультивихревой уловитель

Номер: RU0000175030U1

Полезная модель относится к устройствам для улавливания токсичных веществ из газообразных выбросов в эмульгированном потоке жидкости, применяемым в энергетике, металлургии, химии и других отраслях промышленности.Техническим результатом предлагаемой полезной модели является упрощение изготовления корпуса мультивихревого уловителя. Технический результат достигается тем, что мультивихревой уловитель (для улавливания токсичных веществ из газообразных выбросов), включающий параллельно установленные орошаемые насадки с размещенными в них аксиальными лопастными завихрителями, объединенные в одном корпусе и имеющие общий подвод и отвод дымовых газов, (насадки выполнены в виде параллелепипедов), характеризуется тем, что корпус выполнен сборным из прямоугольных пластин.В корпусе над завихрителями могут располагаться сепараторы для отделения жидкой фазы от газовой фазы. Ширина пластин корпуса может быть равна или кратна ширине орошаемых насадок и равна или кратна ширине установленных в корпусе сепараторов. Корпус может выполняться из отбортованных по краю под прямым углом пластин, (ширина бортика существенно меньше ширины основной пластины).Заявляемое конструкторско-техническое решение может с успехом применяться в химической, металлургической, энергетической, и др. отраслям промышленности, где необходима организация контакта газа и жидкости для тепломассообмена, в частности для очистки газов от пыли и химических вредных примесей. Устройство может быть использовано в качестве скруббера, абсорбера, десорбера, контактного теплообменника, химического реактора в технологических процессах. Ц 1 175030 ко РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ т, е и И т. а < г 13 ВИ ‘503094 (51) МПК ВОР 4704 (2006.01) (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21)(22) Заявка: 2017126292, 23.07.2017 (24) Дата начала отсчета срока действия патента: 23.07.2017 Дата регистрации: 16.11.2017 Приоритет(ы): (22) Дата подачи заявки: 23.07.2017 (45) Опубликовано: 16.11. ...

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18-03-2020 дата публикации

Сепаратор для очистки газа от примесей

Номер: RU0000196886U1

Сепаратор для очистки газа от примесей относится к области нефтегазовой, газовой промышленности, нефтегазодобычи, транспортировки влажного газа, в частности к очистке попутного нефтяного газа (далее ПНГ) от механических примесей и взвешенных частиц (пыли) по технологии мокрой очистки (барботажа). Предлагаемое устройство направлено на получение следующего технического результата, расширение арсенала технических средств для трехступенчатой очистки газа от механических примесей. Поставленная задача решается за счет того, что сепаратор для очистки газа от примесей содержит корпус с осаждающей камерой гравитационного пылеуловителя прямоточного типа, патрубки входа и выхода, перфорированную трубу, уровнемер, слой затворной жидкости и каплеуловитель, причем каплеуловитель расположен на патрубке выхода газового потока из сепаратора, а на горизонтальном участке перфорированной трубы отверстия выполнены в два ряда под углом 40° и направлены к днищу осаждающей камеры. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 196 886 U1 (51) МПК B01D 45/02 (2006.01) B01D 47/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B01D 47/021 (2019.08); B01D 45/02 (2019.08); B01D 53/14 (2019.08) (21)(22) Заявка: 2019124464, 30.07.2019 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Акционерное общество "Самаранефтегаз" (RU) Дата регистрации: 18.03.2020 (56) Список документов, цитированных в отчете о поиске: RU 2503486 С1, 10.01.2014. SU 1225602 А1, 23.04.1986. RU 170646 U1, 03.05.2017. RU 2354433 C1, 10.05.2009. US 9486750 B2, 08.11.2016. US 20160158686 A1, 09.06.2016. (45) Опубликовано: 18.03.2020 Бюл. № 8 1 9 6 8 8 6 R U (54) СЕПАРАТОР ДЛЯ ОЧИСТКИ ГАЗА ОТ ПРИМЕСЕЙ (57) Реферат: Сепаратор для очистки газа от примесей задача решается за счет того, что сепаратор для относится к области нефтегазовой, газовой очистки газа от примесей содержит корпус с промышленности, нефтегазодобычи, осаждающей камерой ...

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23-03-2022 дата публикации

Вихревой воздушно-жидкостный очиститель воздуха

Номер: RU0000209813U1
Принадлежит: Чэнь-Син ЛИНЬ

Полезная модель предназначена для очистки воздуха. Вихревой воздушно-жидкостный очиститель воздуха состоит из диска накопления жидкости с местом для накопления жидкости, выполненным в форме утопленной конструкции для накопления жидкости, трубы нагнетания воздуха, расположенной на верхнем конце диска накопления жидкости и направленной вверх для образования полого корпуса, где нижний конец имеет нижнюю основу, уплотненную на верхнем конце диска накопления жидкости и имеющую отверстия для входа воздуха, расположенные рядом с периферией трубы нагнетания воздуха, при этом одна сторона отверстия для входа воздуха расширяется вниз и наискось наклонена, тем самым образуя трубу, обеспечивающую создание вихревого потока воздуха. Очиститель имеет вентилятор для всасывания воздуха, расположенный в трубе нагнетания воздуха; отверстие для входа воздуха с трубой, образованное на нижней основе, которое используется для входа потока воздуха для создания вихревого потока воздуха, дующего в жидкость. Технический результат: эффективная очистка воздуха. 7 з.п. ф-лы, 14 ил. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 209 813 U1 (51) МПК B01D 47/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B01D 47/02 (2021.08) (21)(22) Заявка: 2021118794, 28.06.2021 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): ЛИНЬ, Чэнь-Син (TW) Дата регистрации: 23.03.2022 Приоритет(ы): (30) Конвенционный приоритет: 10.07.2020 TW 109208787 (45) Опубликовано: 23.03.2022 Бюл. № 9 2 0 9 8 1 3 R U (54) ВИХРЕВОЙ ВОЗДУШНО-ЖИДКОСТНЫЙ ОЧИСТИТЕЛЬ ВОЗДУХА (57) Реферат: Полезная модель предназначена для очистки при этом одна сторона отверстия для входа воздуха. Вихревой воздушно-жидкостный воздуха расширяется вниз и наискось наклонена, очиститель воздуха состоит из диска накопления тем самым образуя трубу, обеспечивающую жидкости с местом для накопления жидкости, создание вихревого потока воздуха. Очиститель выполненным в форме ...

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01-03-2012 дата публикации

Paint booth with purifier

Номер: US20120048189A1
Автор: Minoru Tashiro
Принадлежит: Bunri Inc

A paint booth is provided with a purifier. The purifier includes a water tank, pump, water cord formation mechanism, sludge removal mechanism, exhaust mechanism, and barrier member. The water cord formation mechanism includes a water case located in an upper part of a spray chamber. A large number of nozzles are formed in a bottom wall of the water case. Each nozzle includes a tubular portion, the inside diameter of which is reduced downward from an inlet, and a circular outlet. Water falling in straight lines from the outlet forms a large number of parallel water cords. Paint mist is collected as air containing the paint mist contacts the water cords. An exhaust chamber is formed on the back side of the barrier member.

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03-05-2012 дата публикации

Method of removing liquid contaminant droplets from a gas stream, and wash tray

Номер: US20120103193A1
Принадлежит: Individual

A method of removing liquid contaminant droplets from a gas stream, comprising providing a wash tray in a vessel with at least one swirl tube device; admitting the gas stream including liquid contaminant droplets into the at least one swirl tube; admitting wash liquid into the gas stream in the at least one swirl tube, to form a gas/liquid mixture with wash liquid droplets dispersed in the gas stream; allowing the wash liquid droplets and liquid contaminant droplets to interact in a scrubbing section; passing the gas/liquid mixture along a swirl imparting means so as to perform centrifugal separation into washed gas and liquid, and removing washed gas and liquid. Moreover a swirl tube wash tray for use in a vessel for removing liquid contaminant droplets from a gas stream by means of a wash liquid, which wash tray comprises having a wash liquid supply means with an outlet opening some distance above a liquid supply space.

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06-09-2012 дата публикации

Device for recovering nanopowders and ultrafine powders contained in a gas

Номер: US20120222558A1

A device for recovering nanometer or sub-micron particles carried by a gas by generating a stabilized suspension, including: a vessel including a mechanism injecting a liquid; a gas discharge mechanism in an upper portion thereof, located near a particle filter; a particle suspension outlet; and a liquid ring pump, transferring and dispersing particles carried by a gas into a liquid. The pump introduces a gas laden with nanometer or sub-micron particles into the pump; injects at least one liquid into the pump; and discharges the mixture obtained following the transfer. The vessel also includes a mechanism introducing the mixture into the vessel and at least one piezoelectric pellet, immersed in the vessel, configured to generate a fog of micron-sized droplets.

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14-02-2013 дата публикации

Composition and method for dust suppression wetting agent

Номер: US20130040373A1
Принадлежит: CASHMIR

This disclosure teaches a composition and process which makes it possible to remove floating particulates or prevent the dissemination or particulates, by the misting of a solution that readily captures any particulate material in the air. More specifically, the present disclosure teaches the composition and use of aromatic compounds that are semi-volatile organic compounds (SVOCs) or slow evaporators in water-based carriers with surfactants as the misting/fogging agent for dust suppression. The particulate material is lowered to surfaces and removed by vacuuming, damp-wiping or using a dry cloth with a cationic charge (static cloth). This method can be achieved with neutral air pressure differentials in the work areas.

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21-02-2013 дата публикации

Air purifier

Номер: US20130042756A1
Принадлежит: EMPIRE TECHNOLOGY DEVELOPMENT LLC

An air purifier is disclosed having a bubble generator configured to generate fine air bubbles with a diameter of about 50 μm or less and a negative electrical charge. The bubble generator is coupled to an air purification tank, which contains a liquid for purifying the air within the air bubbles, by dissolving impurities. The tank also has a positive electrode disposed within the liquid. The positive electrode is configured to attract the negatively charged air bubbles, thereby promoting defoaming and increasing the air throughput rate.

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14-03-2013 дата публикации

PAINT MIST COLLECTING DEVICE AND PAINT BOOTH USING THE SAME

Номер: US20130061802A1
Принадлежит: HONDA MOTOR CO., LTD.

A paint mist collecting device for collecting a mist of paint particles produced when a paint is sprayed onto a workpiece within a paint booth includes a tubular duct having one end adapted to be connected to an outlet of the paint booth from which air containing the paint mist and a cleaning air are allowed to flow out, and a swirl-generating guide fin unit disposed inside the tubular duct and configured to force axial flows of the paint-mist-containing air and the cleaning liquid into a rotational movement to thereby generate a helical vortex as the paint-mist-containing air and the cleaning liquid flow downward along the tubular duct. 1. A paint mist collecting device for use in a paint booth for collecting a mist of paint particles produced when a paint is sprayed onto a workpiece within the paint booth while air containing the paint mist and a cleaning liquid are allowed to flow out from an outlet formed at a bottom part of the paint booth , the paint mist collecting device comprising:a tubular duct having one end adapted to be connected to the outlet of the paint booth; anda swirl-generating guide fin unit disposed inside the tubular duct and configured to force axial flows of the paint-mist-containing air and the cleaning liquid into a rotational movement to thereby generate a helical vortex as the paint-mist-containing air and the cleaning liquid flow downward along the tubular duct.2. The paint mist collecting device according to claim 1 , wherein the tubular duct includes a frustconical intake section claim 1 , a cylindrical intermediate section claim 1 , and a tapered nozzle section arranged in an axial direction of the tubular duct with the intermediate section disposed between the intake section and the nozzle section claim 1 , the frustconical intake section having a large-diameter end forming the one end of the tubular duct claim 1 , the cylindrical intermediate section having a uniform diameter throughout the length thereof claim 1 , the tapered ...

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14-03-2013 дата публикации

GAS ABATEMENT SYSTEM

Номер: US20130064730A1
Принадлежит:

Provided is a gas abatement system including piping. This system can be made overall more compact, with better serviceability, and at a lower cost. A gas abatement system is provided with: a water-cooled combustion-type abatement apparatus that performs combustion decomposition and scrub dust collection on gases to be processed that include silane, which is a semiconductor material gas, as well as a gaseous fluoride such as NF3, CF4, C2F6, SF6, CHF3 or CF6, that is used as a cleaning gas, for instance, in plasma cleaning of air-tight chambers C C Cn of a plasma CVD apparatus or the like; an electrostatic precipitator that performs electric dust collection on the processed gas after performing combustion decomposition and scrub dust collection; and a pipe that feeds the processed gas after electric dust collection to a plant scrubber facility. 1. A gas abatement system that abates gases to be processed in a plant , whereinthe gas abatement system comprises:a water-cooled combustion-type abatement apparatus that performs combustion decomposition and scrub dust collection on the gases to be processed;an electrostatic precipitator that performs electric dust collection on the processed gas after performing the combustion decomposition and scrub dust collection; anda pipe that feeds the processed gas, after the electric dust collection, to an existing scrubber facility in the plant.2. The gas abatement system according to claim 1 ,wherein the pipe is a metal pipe of stainless steel or other metals having an inner face not subjected to an anti-corrosion treatment, or a resin pipe of vinyl chloride or other resins.3. The gas abatement system according to or claim 1 , wherein the gas abatement system is provided with an exhaust pump. 1. Field of the InventionThe present invention relates to a gas abatement system that abates (detoxifies) silane (SiH4) and gaseous fluorides such as nitrogen trifluoride (NF3), and more particularly, to a gas abatement system including piping ...

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21-03-2013 дата публикации

INTERLOCK AND PROCESS

Номер: US20130072653A1
Принадлежит:

The present invention relates to the degassing of polymer powder, and in particular provides an interlock for use in a process for degassing of a polymer powder in a degassing vessel, which interlock comprises: a. measuring the temperature of the vapour phase resulting from a liquid-vapour separation, which vapour phase is used as a purge gas in a degassing vessel, b. comparing said measured temperature to a threshold value, and b. in the event that the measured temperature is above the threshold value then the use of the vapour as purge gas is stopped or reduced. 110-. (canceled)11. An interlock for use in a process for degassing of a polymer powder in a degassing vessel , which interlock comprisesa. measuring the temperature of the vapour phase resulting from a liquid-vapour separation, which vapour phase is used as a purge gas in a degassing vessel,b. comparing said measured temperature to a threshold value, andc. in the event that the measured temperature is above the threshold value then the use of the vapour as purge gas is stopped or reduced.13. An interlock according to wherein the liquid-vapour separation vessel is downstream of a condensation/compression system claim 11 , by which is meant a system in which the purge gas is cooled and compressed in order that hydrocarbons removed from the degassed polymer condense to form the liquid phase in the separation vessel.14. An interlock according to wherein the liquid-vapour separation vessel is downstream of a condensation/compression system claim 12 , by which is meant a system in which the purge gas is cooled and compressed in order that hydrocarbons removed from the degassed polymer condense to form the liquid phase in the separation vessel.15. A process for the degassing of a polymer powder in a degassing vessel claim 12 , which process comprises:a. passing polymer powder and purge gas to a degassing vessel wherein the purge gas contacts the polymer powder,b. removing degassed polymer from the degassing ...

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11-07-2013 дата публикации

Method to decrease the amount of particulate material suspended in air or water, comprising the agglomeration of the suspended particulate material with negatively charged exopolysaccharides

Номер: US20130174734A1

The invention is directed to decreasing the amount of particulate material suspended in air or water, in any situation in which it is desired to decrease the amount of particulate material in suspension, and especially in industrial processes that generate particulate material suspended in air or water. In particular, the invention is directed to decreasing the particulate material in suspension by means of agglomeration with negatively charged ExoPolySaccharides (EPS). To decrease the amount of particulate material suspended in air, this can be sprayed with a negatively charged EPS solution according to the invention, or the EPS can be immobilized on a filter which the air with particulate material passes through. To decrease the amount of particulate material in water, a suspension with a negatively charged EPS solution according to the invention is added to said water, which agglomerates and settles the particulate material by means of the charge attraction principle.

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18-07-2013 дата публикации

Filter module

Номер: US20130180221A1
Автор: Erich Peteln
Принадлежит: DEXWET USA LLC

The invention relates to a filter module ( 1 ) for removing air-polluting materials from machine exhaust, comprising a filter housing ( 2 ) with an intake opening ( 5 ) and an outlet opening ( 6 ) for channeling machine exhaust through, at least one mounting element ( 24 ) for mounting the filter module ( 1 ) on a machine, and a filter assembly ( 7 ), arranged in the filter housing ( 2 ) and comprised of at least two filter groups ( 8 ), arranged in tandem in the direction of flow ( 3 ) and comprised of rod-shaped filter elements ( 10 ) with a filter medium ( 20 ), said elements being arranged parallel to one another at a constant center-to-center distance ( 9 ) and with their longitudinal axis largely crosswise to the direction of flow ( 3 ), wherein the filter elements ( 10 ) of two adjacent filter groups ( 8 ) are parallel to one another, and are arranged offset in relation to one another, crosswise to their longitudinal axes and to the direction of flow ( 3 ). The filter elements ( 10 ) are connected with at least one filter bracket ( 11 ) to form at least one filter insert ( 12 ), and the filter insert ( 12 ) is detachably connected to the filter housing ( 2 ).

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08-08-2013 дата публикации

DT VAPOR WASH

Номер: US20130199052A1
Автор: Anderson George E.
Принадлежит:

An agricultural product treatment system. A preferred embodiment of the invention includes a truncated conical section which has a small diameter at one end in fluid communication with a conduit array conveying particulate matter from the DT. An open large diameter end of the structure is axially coextensive and coaxial with an expanded diameter conduit portion. 1. An agricultural product treatment system having a desolventizer/toaster (DT) and an evaporator apparatus connected down flow of the DT by a conduit array , further comprising:a mist injection station in a segment of the conduit array extending downwardly at an acute angle from an egress port rising from an upper end of the DT;a generally vertically extending segment of the conduit array in fluid communication with an egress end of the segment of the conduit array extending downwardly at an acute angle;a truncated conical section having a small diameter end in fluid communication with an egress end of said generally vertically extending segment, and an open, large diameter end axially coextensive and coaxial with an expanded diameter conduit portion, thereby defining an annular plenum within said expanded diameter conduit portion; anda bridge section of the conduit facilitating passage of fluid flow and particulate matter entrained therein from said annular plenum to the evaporator.2. The product treatment system in accordance with wherein an angle defined by a wall claim 1 , forming said truncated conical section claim 1 , relative to an axis with respect to which the various components are defined claim 1 , is small.3. The product treatment system in accordance with wherein said angle is less than 20 degrees.4. The product treatment system in accordance with wherein said mist injection station is located in said conduit array so that said mist injection station can be employed to add chemicals to neutralize the effects of corrosive acids and caustic chemicals.5. The product treatment system in accordance ...

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05-09-2013 дата публикации

Spray Device to be Mounted on an Electric Vehicle

Номер: US20130228940A1
Принадлежит:

A spray device mounted on a non-motor vehicle (T-car) selected from among commercial or novel electric vehicles so as to improve air quality inside a tunnel by spraying water during operation, collecting pollutants floating inside a subway tunnel, and collecting and sinking fine dust generated by means of the operation of a train onto the road. The spray device is mounted on a lower portion of the non-motorized vehicle (T-car) from among commercial or new electromotive cars, pressurized water is supplied to a distribution pipe on a discharging side by means of a pressurizing motor and a pump, and a jet is sprayed through a spray nozzle coupled to the distribution pipe. Also, it is possible to automatically spray a jet onto a rail surface while a train moves on a ground-level railway using a sensor and a control board. 1. A spray device which is mounted on an electric vehicle in order to improve air quality in a subway tunnel , the spray device comprising:a water supply port disposed at one side of a doorway of a trailer car (T-car) on which the spray device is mounted, the water supply port being supplied with water using a water supply gun at a platform (A) of a subway station;a water supply tank which contains the water therein, the water supply tank having partition plates therein;a compression motor and a pump which supply pressurized water to the spray device;distribution pipes which guide the pressurized water so that the pressurized water is automatically sprayed to a road and both sides of the subway tunnel and to a surface of ground rails;spray nozzles disposed in the distribution pipes to spray the pressurized water to the road and both sides of the subway tunnel and to the surface of ground rails;a pressure adjustment valve for adjusting the pressurized water supplied to the spray nozzles to a proper pressure;automatic valves disposed on the distribution valves at front ends of the spray nozzles; anda control panel which controls the automatic valves, the ...

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03-10-2013 дата публикации

METHODS FOR CONDENSING A HUMID GAS

Номер: US20130260463A1
Принадлежит: HyClone Laboratories, Inc.

A method for processing a fluid includes sparging a fluid within the compartment of a container with an initial gas so that the initial gas passes through a portion of the fluid to form a humid gas within the compartment. The humid gas is passed out of the compartment of the container and into a flexible condenser bag. The humid gas within the condenser bag is cooled so as to separate the humid gas within the condenser bag into a condensed fluid and a dehumidified gas. The condensed fluid and the dehumidified gas is then removed from the condenser bag. 1. A method for processing a fluid , the method comprising:sparging a fluid within the compartment of a container with an initial gas so that the initial gas passes through a portion of the fluid to form a humid gas within the compartment;passing the humid gas out of the compartment of the container and into a flexible condenser bag;cooling the humid gas within the condenser bag so as to separate the humid gas within the condenser bag into a condensed fluid and a dehumidified gas; andremoving the condensed fluid and the dehumidified gas from the condenser bag.2. The method as recited in claim 1 , wherein the flexible condenser bag is comprised one or more flexible sheets of polymeric material.3. The method as recited in claim 1 , wherein the container comprises a flexible bag comprised one or more flexible sheets of polymeric material.4. The method as recited in claim 1 , further comprising:dispensing media and cells or microorganisms into the compartment of the container to form the fluid; andmixing the fluid within the container.5. The method as recited in claim 1 , further comprising returning the condensed fluid back into the compartment of a container.6. The method as recited in claim 1 , further comprising exhausting the dehumidified gas through a filter and into the open environment.7. The method as recited in claim 1 , wherein the condenser bag is mounted on a condenser and the step of cooling the humid gas ...

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31-10-2013 дата публикации

Container data center

Номер: US20130284027A1
Автор: Feng-Chi Yang
Принадлежит: Hon Hai Precision Industry Co Ltd

A container data center includes a container and an air purification device. The air purification device includes an air inlet, a dissolution unit, and a separation unit. The dissolution unit receives dissolution liquid. The air that comes from the air inlet flows through the dissolution liquid, so that salt in the air may dissolve into the dissolution liquid. The air that comes from the dissolution unit flows through the separation unit, to dry the air. The dried air then flows into the container.

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31-10-2013 дата публикации

Ultraviolet monitoring systems, methods, and devices

Номер: US20130287627A1
Принадлежит: Halton Group Ltd Oy

In embodiments, a control system for a UV air treatment system, especially one used for cleaning a fume stream such as in a kitchen exhaust system, detects a need for cleaning maintenance on the UV light source based on changes in light intensity. The system further detects the light intensity each time the UV light source is cleaned to determine if the drop in intensity after cleaning indicates that the UV light source should be replaced. The cleaning and replacement requirements are indicated automatically by a user interface.

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05-12-2013 дата публикации

Gas Purifying Device for Energy Saving and Preventing Spraying Waste Water Indiscriminately and Method Thereof

Номер: US20130319238A1
Принадлежит:

A gas purifying device for energy saving and preventing spraying waste water indiscriminately includes: a container () containing a proper quantity of purifying liquid; a waste gas incoming pipe () having a channel mouth () for introducing waste gas, wherein the channel mouth () is contacted with and provided in the purifying liquid in the container () and is submerged by the purifying liquid; and safe gas discharge channels () for purified gas. A cross-sectional area of a narrowest part of the safe gas discharge channel () is greater than a smallest part of the waste gas incoming pipe (), so as to ensure a smooth operation of the gas discharge channel. The gas purifying device solves problems of regular engine flameout due to the non-smooth gas discharge of a purifier and environmental pollution caused by spraying waste water indiscriminately in the purifier working process. 119-. (canceled)20. A gas purifying device for energy saving and preventing spraying waste water indiscriminately , comprising:a container containing a proper quantity of purifying liquid,a slant type waste gas incoming pipe before purification having a channel mouth for introducing waste gas, which is contacted with the purifying liquid in the container, and is submerged by the purifying liquid, anda safe gas discharge channel for purified gas, wherein a cross sectional area of a narrowest part of the safe gas discharge channel for purified gas is over one time greater than a narrowest part of the waste gas incoming pipe before purification.21. The device claim 20 , as recited in claim 20 , wherein the device is made of metal claim 20 , nonmetal or mixed materials.22. The device claim 20 , as recited in claim 20 , wherein a gas filter is provided in the gas discharge channel.23. The device claim 20 , as recited in claim 20 , wherein the waste gas incoming pipe having the channel mouth is communicated with various waste gases.24. The device claim 20 , as recited in claim 20 , wherein an ...

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09-01-2014 дата публикации

Dust Scrubber

Номер: US20140008962A1
Автор: Brian Plush
Принадлежит: MONTALL HOLDINGS PTY LTD

A dust scrubber for a mining shearer machine is adapted to be mounted behind the rear surface of the shearer arm, on the opposite side of the arm to the mine surface being cut, so as to extract airborne particulates. The scrubber may be mounted to the shearer via a compensation mechanism such as a double hinge and link arrangement which maintains relatively static position and/or orientation of the scrubber despite the pivoting of the shearer arm in operation.

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30-01-2014 дата публикации

WET SCRUBBER AND A METHOD OF CLEANING A PROCESS GAS

Номер: US20140026753A1
Автор: Håkansson Rikard
Принадлежит: ALSTOM TECHNOLOGY, LTD.

A wet scrubber () useful for cleaning a process gas comprises at least a first spray level system () and a second spray level system () arranged vertically above the first spray level system () in a wet scrubber tower (). The first spray level system () comprises at least one gas-liquid contacting plate () which is operative for deflecting absorption liquid, that has been atomized by means of the second spray level system () and flowing downward in the wet scrubber tower (), so deflected absorption liquid (AL) may contact process gas (F) contacted by absorption liquid atomized by the first spray level system (). 1. A method of cleaning a process gas by means of a wet scrubber comprising:deflecting absorption liquid atomized by nozzles of a second spray level system flowing downwards in the wet scrubber tower, from at least one nozzle of a first spray level system by means of a gas-liquid contacting plate located vertically above the at least one nozzle of the first spray level system, to bring deflected absorption liquid into contact with process gas already contacted by absorption liquid atomized by the at least one nozzle of the first spray level system.2. A method according to claim 1 , wherein an individual gas-liquid contacting plate is arranged vertically above each of at least half of all nozzles of the first spray level system absorption liquid deflected thereby.3. A method according to claim 1 , wherein open spaces between horizontally adjacent gas-liquid contacting plates claim 1 , allow for vertical flue gas flow at a vertical process gas velocity of 5-15 m/s.4. A method according to claim 1 , further comprising controlling vertical process gas velocity by adjusting a damper arranged adjacent to at least one gas-liquid contacting plate.5. A method according to claim 1 , further comprising deflecting absorption liquid atomized by means of nozzles of a third spray level system flowing downwards in the wet scrubber tower from the vicinity of at least one ...

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06-02-2014 дата публикации

Wick wetting for water condensation systems

Номер: US20140033915A1
Принадлежит: Aerosol Dynamics Inc

A system and method for particle enlargement with continuously wetted wicks includes a container into which a flow of particle-laden air is introduced in a laminar manner through an inlet and to an outlet. The container has a first section, a second section and a third section though which the particle-laden air flows between the inlet and the outlet. The temperature of the second section is warmer than that of the first section at the inlet and the third section at the outlet. In one embodiment, a continuous wick spanning an interior wall of the first second, second section and third section, said wick being capable of internally transporting liquid water along its length is provided. Alternatively, a wick characterized by a bubble point pressure has one side in contact with air and an opposing side mounted adjacent to the interior wall of a housing with a gap formed between the wick and the housing, wherein the wick is used with a water reservoir such that the pressure difference between the air flow and the water filled gap is less than the bubble point pressure of the wick material.

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27-02-2014 дата публикации

SYSTEMS AND METHODS FOR REMOVING PARTICULATE MATTER FROM A GAS STREAM

Номер: US20140053731A1
Принадлежит: ALCOA INC.

Horizontal duct scrubbing systems for removing particulate matter from a gas are disclosed. The horizontal scrubbing systems may receive a particulate-containing gas stream (e.g., containing PM10 and/or PM2.5 particulate matter), and remove at least some of such particulates by spraying liquid droplets co-current to the flow of the gas stream, where the liquid droplets have a volume median droplet diameter (DV0.5) of from 240 microns to 600 microns. The scrubbing system may be substantially free of flow deflection members between a liquid inlet manifold and a demister. The system may be remove at least 50 wt. % PM10 and/or PM2.5 particulate matter from the gas stream. 119-. (canceled)20. A method for removing particulate matter from a gas , the method comprising:{'sup': '3', 'claim-text': (i) the waste gas inlet at one end;', '(ii) a treated gas outlet at an opposite end;', '(iii) a liquid inlet manifold proximal the waste gas inlet, the liquid inlet manifold comprising a plurality of nozzles, wherein the nozzles are oriented to spray liquid droplets co-current to the gas stream;', '(iv) and a demister proximal the treated gas outlet;', 'wherein the horizontally disposed housing is substantially free of flow deflection members between the liquid inlet manifold and the demister, thereby defining a substantially unrestricted particulate-liquid contacting zone between the liquid inlet manifold and the demister;, '(a) directing a particulate-containing gas stream having a concentration of least 0.7 mg/mof PM10 particulate matter into a horizontally disposed housing via a waste gas inlet, the horizontally disposed housing comprising(b) passing the gas stream through the substantially unrestricted particulate-liquid contacting zone;(c) supplying a liquid to the plurality of nozzles via the liquid inlet manifold, thereby spraying liquid droplets through the substantially unrestricted particulate-liquid contacting zone and co-current to the flow of the gas stream, wherein ...

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06-03-2014 дата публикации

EXHAUST GAS SEPARATING TOWER AND EXHAUST GAS SEPARATING AND RECYCLING SYSTEM

Номер: US20140060333A1

The invention relates to an exhaust gas separating tower, comprising a washing section, a flash-distilling section above the washing section, and a liquid seal means between the flash flash-distilling section and the washing section. The washing section is configured for washing exhaust gas entering the tower with a cooling liquid to at least partially remove solid dust entrained in the exhaust gas, cool the exhaust gas, and condense at least a portion of moisture in the exhaust gas into liquid. The flash-distilling section is configured for flash-distilling the cooling liquid from the washing section to produce a cooled cooling liquid and a cooling liquid vapor. The liquid seal means is configured so that the cooling liquid produced by flash-distillation can enter the washing section through the liquid seal means while the flash-distilling section is in gas-phase isolation from the washing section, wherein a pressure in the flash-distilling section is lower than that in the washing section. 1. An exhaust gas separating tower , comprising:a washing section configured for washing an exhaust gas entering the tower with a cooling liquid so as to at least partially remove solid dust entrained in the exhaust gas, cool the exhaust gas, and condense at least a portion of moisture in the exhaust gas into liquid, the washing section comprising an exhaust gas inlet, an exhaust gas outlet arranged above the exhaust gas inlet, and a cooling liquid outlet for discharging the cooling liquid having washed the exhaust gas;a flash-distilling section arranged above the washing section and configured for flash-distilling the cooling liquid from the washing section to produce a cooled cooling liquid to be provided to the washing section and a cooling liquid vapor, the flash-distilling section comprising a cooling liquid inlet through which the cooling liquid from the washing section enters the flash-distilling section, a flash-distilling space for performing flash-distillation therein, ...

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06-01-2022 дата публикации

NEGATIVE-ION-HUMIDIFYING AIR PURIFIER BASED ON THE FLOW DIVERSION OF WATER PUMPS

Номер: US20220001322A1
Автор: Peng Meihong
Принадлежит:

The present utility model discloses a negative-ion-humidifying air purifier. The negative-ion-humidifying air purifier includes an outer cup body and a top cover covering an upper end of the outer cup body, wherein the outer cup body is internally provided with an inner cup body, a PCB, and a first water pump; a gap is reserved between an outer wall of the inner cup body and an inner wall of the outer cup body; a water-spray tube body is disposed in the inner cup body; the outer cup body is provided with a frame that is above the inner cup body; the frame is provided with a counter impacting block that is directly above a water outlet of the water-spray tube body; top cover and outer cup body are each provided with an air-outlet mesh hole; and a fan is disposed in the top cover or the outer cup body. 1. A negative-ion-humidifying air purifier based on the flow diversion of water pumps , comprising: an outer cup body and a top cover covering an upper end of the outer cup body , wherein the outer cup body is internally provided with an inner cup body , a PCB , and a first water pump that is electrically connected to the PCB; a gap is reserved between an outer wall of the inner cup body and an inner wall of the outer cup body; a water-spray tube body is disposed in the inner cup body; a water inlet tube of the first water pump is connected with a base of the inner cup body; a water outlet tube of the first water pump is connected with the water-spray tube body; the outer cup body is provided with a frame that is above the inner cup body; the frame is provided with a counter impacting block that is directly above a water outlet of the water-spray tube body; the top cover and the outer cup body are each provided with an air-outlet mesh hole; and a fan that is electrically connected to the PCB is disposed in the top cover or the outer cup body.2. The negative-ion-humidifying air purifier based on the flow diversion of the water pumps according to claim 1 , wherein a water ...

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07-01-2016 дата публикации

MANEUVERABLE AIR PURIFICATION DEVICE

Номер: US20160001214A1
Автор: Chen Yun-Yueh
Принадлежит:

A maneuverable air purification device includes an automobile assembly and an air purification assembly movable thereby. The air purification assembly includes a barrel mounted on the automobile body. The barrel has an intermediate section in which a necked and reduced channel compression section is formed. The barrel has two ends that are respectively an air drawing opening corresponding a tail end of the automobile body and an air discharge opening. The barrel includes a filter arranged in the channel compression section. The chamber of the barrel includes a sprayer at one side of the filter corresponding to the air discharge opening. The chamber of the barrel includes a blower arranged therein at a location adjacent to the air discharge opening. 1. A maneuverable air purification device , comprising:an automobile assembly, which comprises an automobile body, the automobile body comprising a plurality of wheels mounted to a lower side thereof for movement, the automobile body of the automobile assembly having two ends that are respectively a front end and a tail end; andan air purification assembly, which comprises a barrel mounted on the automobile body, the barrel comprising a hollow chamber formed therein to extend through two ends thereof, the chamber of the barrel having an intermediate section in which a necked and reduced channel compression section is formed, the chamber of the barrel having two ends that are respectively an air drawing opening and an air discharge opening, wherein the air drawing opening corresponds to the tail end of the automobile body and the air discharge opening corresponds to the front end of the automobile body, the barrel comprising a filter arranged in the channel compression section of the chamber, the chamber of the barrel comprising a sprayer arranged on a top of one side of the filter corresponding to the air discharge opening to spray down dusts of various specific weights in a direction from top to bottom, the barrel ...

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04-01-2018 дата публикации

Methods Apparatuses Assemblies Devices and Systems for Conditioning and Purifying Air

Номер: US20180001249A1
Автор: Sher Abe M.
Принадлежит:

Disclosed are methods, apparatuses, assemblies, devices and systems for removing pollutants from air within a space or an environment. Humidifiers introduce a pollutant trapping material into the air of the space or environment by evaporating the pollutant trapping material, wherein the pollutant trapping material adheres to pollutants in the air being purified. Dehumidifiers remove the pollutant trapping material, along with pollutants adhered thereto, from the air by dehumidifying it. The cooperation of the humidifier(s) and the dehumidifier(s) may be collaborated based on a combination of pollutant concentration level value(s) and relative humidity level value(s) measured in the air. 1. A system for removing pollutants from air within a space , said system including:{'sub': '2', 'one or more humidifiers, positioned at a first set of one or more locations within the space, for introducing a pollutant trapping material at least partially composed of water (HO) into the air of the space by evaporating the pollutant trapping material, wherein the pollutant trapping material adheres to pollutants in the air being purified;'}one or more dehumidifiers, positioned at a second set of one or more locations within the space, for removing the pollutant trapping material, along with pollutants adhered thereto, from the air by dehumidifying it;a control logic for collaborating the cooperation of said humidifier(s) and said dehumidifier(s) at least partially based on the rate or speed at which a combination of said one or more dehumidifiers dehumidify the air.2. A system for removing pollutants from air within a space , said system including:{'sub': '2', 'one or more humidifiers, positioned at a first set of one or more locations within the space, for introducing a pollutant trapping material at least partially composed of water (HO) into the air of the space by evaporating the pollutant trapping material, wherein the pollutant trapping material adheres to pollutants in the air ...

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04-01-2018 дата публикации

CARBON DIOXIDE CAPTURING SYSTEM AND EXHAUST GAS PROCESSING METHOD

Номер: US20180001254A1
Принадлежит: KABUSHIKI KAISHA TOSHIBA

In one embodiment, a carbon dioxide capturing system includes an absorber configured to include a first contact portion that brings a combustion exhaust gas containing carbon dioxide into contact with an absorbing liquid containing an amine compound, cause the absorbing liquid to absorb at least a portion of the carbon dioxide in the combustion exhaust gas at the first contact portion, and release the combustion exhaust gas. The system further includes a washing apparatus configured to include a second contact portion that brings the combustion exhaust gas released from the first contact portion of the absorber into contact with a washing liquid, and configured such that the combustion exhaust gas and the washing liquid are individually fed to an upstream side of the second contact portion. 1. A carbon dioxide capturing system comprising:an absorber configured to include a first contact portion that brings a combustion exhaust gas containing carbon dioxide into contact with an absorbing liquid containing an amine compound, cause the absorbing liquid to absorb at least a portion of the carbon dioxide in the combustion exhaust gas at the first contact portion, and release the combustion exhaust gas; anda washing apparatus configured to include a second contact portion that brings the combustion exhaust gas released from the first contact portion of the absorber into contact with a washing liquid, and configured such that the combustion exhaust gas and the washing liquid are individually fed to an upstream side of the second contact portion.2. The system of claim 1 , further comprising a demister on a downstream side of the second contact portion.3. The system of claim 2 , wherein the demister is provided at a position where a projection position of the demister on a horizontal plane does not overlap with a projection position of the second contact portion on the horizontal plane.4. The system of claim 1 , further comprising:a pH adjusting module configured to adjust ...

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02-01-2020 дата публикации

APPARATUS AND METHOD FOR RECOVERING AN AMINE SOLVENT FROM AN ACID GAS STREAM

Номер: US20200001227A1
Принадлежит:

A method and apparatus are provided for recovering an amine solvent from an acid gas stream. The apparatus includes a water wash recovery column, a nozzle for spraying water wash and an amine nucleation agent into the water wash recovery column and an inlet port for introducing acid gas into the water wash recovery column adjacent the lower end thereof. The method includes the steps of treating the acid gas stream in the water wash recovery column with a counter-current flow of water wash in an amine nucleation agent, discharging treated acid gas from an upper end of the water wash recovery column and collecting water wash, amine nucleation agent and entrained amine solvent from the acid gas stream and a sump at a lower end of the water wash recovery column. 1. A method of recovering an amine solvent from an acid gas stream , comprising:treating said acid gas stream in a water wash recovery column with a countercurrent flow of wash water and an amine nucleation agent;discharging treated acid gas from an upper end of the water wash recovery column; andcollecting wash water, amine nucleation agent and entrained amine solvent from the acid gas stream in a sump at a lower end of the water wash recovery column.2. The method of claim 1 , including using as said amine nucleation agent an activated carbon having a density of 997 kg/m+/−600 kg/mand a diameter less than 1.0 millimeter.3. The method of claim 2 , including recirculating the wash water claim 2 , amine nucleation agent and entrained amine solvent in the sump to prevent the amine nucleation agent from settling and clumping.4. The method of claim 3 , including periodically draining the wash water claim 3 , the amine nucleation agent and the entrained amine solvent from the sump.5. The method of claim 4 , including separating the amine nucleation agent from the wash water and the entrained amine solvent.6. The method of claim 5 , including delivering the wash water and entrained amine solvent to an absorber tower ...

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01-01-2015 дата публикации

WET TYPE DUST COLLECTOR FOR AIR PURIFYING

Номер: US20150004064A1
Автор: LEE Seong Hun
Принадлежит:

A wet type dust collector for air purifying according to an embodiment of the present invention can efficiently cool polluted air and remove sludge because it is designed to be able to continuously cool polluted air from the outside with cooling water, which is cooled and circulated, and to remove sludge and foreign substances. 1. A wet type dust collector for air purifying , comprising:a case that forms the outer shape of a collector and receives cooling water;a cooler that cools cooling water that is guided by a cooling pipe connected with the case;a blower that is disposed outside the blower and forcible takes and sends polluted-air inside;a blower pipe that is connected with an outlet of the blower and guides the sent polluted-air into the case;a spray nozzle that is connected with the cooling pipe, disposed in the blower pipe, and sprays cooling water to the polluted-air flowing in the blower pipe;an air spray unit that is connected to the lower end of the blower pipe and distributes the polluted-air discharged through the blower pipe to be discharged in contact with the surface of the cooling water;an auxiliary cooling assembly that is disposed over the air spray unit, has a porous structure forming a cooling water film with the cooling water sprayed from the outside, and cools again the polluted-air moving upward;a filter assembly that is disposed over the auxiliary cooling assembly and filters foreign substances and sludge in the polluted-air; andan air discharge port that is disposed over the case and forms a passage through which the polluted-air passing through the filter assembly is discharged to the outside.2. The wet type dust collector of claim 1 , wherein a plurality of photo-catalytic purifying units is disposed in the air discharge port to sterilize and deodorize the polluted-air claim 1 , using a photo-catalytic reaction.3. The wet type dust collector of claim 2 , wherein the photo-catalytic purifying units are sequentially arranged with regular ...

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20-01-2022 дата публикации

HUMIDIFIER AND/OR FLOW GENERATOR FOR CPAP DEVICE

Номер: US20220016382A1
Принадлежит:

A CPAP device is configured to deliver a pressurized flow of respiratory gas to a patient's airways and includes a flow generator with a blower configured to pressurize the flow of respiratory gas. A flexible face seal is positioned at an outlet end of a blower discharge path. The flexible face seal includes an aperture and a lip curling inwardly from a perimeter of the flexible face seal. A tub configured to hold a body of water and humidify the pressurized flow of respiratory gas includes a heat conducting base plate and a side wall. The side wall has a substantially flat portion that surrounds an air inlet opening. A base supports both the flow generator and the tub and includes a floor with a heater plate. A laterally positioned guide prevents the tub from being removed from the base in a vertical direction and includes a pair of C-shaped channel portions with open sides that face each other. 120-. (canceled)21. A CPAP device configured to deliver a pressurized flow of respiratory gas to a patient's airways , the CPAP device comprising:a flow generator comprising a blower configured to pressurize the flow of respiratory gas and a blower wall with a blower discharge path configured to convey the pressurized flow of respiratory gas from the blower;a flexible face seal connected to the blower wall and positioned at an outlet end of the blower discharge path, the flexible face seal comprising an aperture and a lip curling inwardly from a perimeter of the flexible face seal toward the aperture;a tub configured to hold a body of water and humidify the pressurized flow of respiratory gas, the tub comprising a heat conducting base plate and a tub side wall, the tub side wall having a substantially flat portion that surrounds an air inlet opening;a base that supports both the flow generator and the tub and comprises a floor with a heater plate, the tub being horizontally removable from the base by sliding the tub away from the blower wall and being horizontally ...

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12-01-2017 дата публикации

Air Purifier System

Номер: US20170007954A1
Автор: Sassan Ehdaie
Принадлежит: Individual

An air purifier system for removing particulate matter and gaseous particles from polluted indoor air is provided. The air purifier system comprises a filtration chamber having an amount of water. The filtration chamber receives the polluted indoor air with the polluted indoor air traveling through the water leaving behind particulate matter and gaseous particles in the water and cleaned air exiting the filtration chamber. An electrolyzer continuously electrolyzes distilled water to generate hydrogen molecules and oxygen molecules in an electrolysis process with the oxygen gases added to the cleaned air exiting the filtration chamber. A fuel cell receives the hydrogen gases from the electrolyzer for generating electricity with the fuel cell electrically connected to at least the electrolyzer for at least partially powering the electrolyzer. The cleaned air exits the filtration chamber is free from particulate matter and gaseous particles.

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12-01-2017 дата публикации

FAN SCRUBBER AND VACUUM PUMP APPARATUS

Номер: US20170007961A1
Принадлежит: EBARA CORPORATION

The fan scrubber is provided with a casing having a gas draw-in port and a gas ejection port, a fan disposed in the casing, a nozzle from which a liquid is jetted into the casing, and a canned motor connected to the fan. The canned motor has a main shaft connected to the fan, a rotor which rotates integrally with the main shaft, a stator disposed on the periphery of the rotor, a motor casing in which the rotor and the stator are housed, and a can which partitions the interior of the motor casing into a rotor chamber in which the rotor is disposed and a stator chamber in which the stator is disposed. 1. A fan scrubber comprising:a casing having a gas draw-in port and a gas ejection port;a fan disposed in the casing;a nozzle from which a liquid is jetted into the casing; anda canned motor having a main shaft connected to the fan, a rotor which rotates integrally with the main shaft, a stator disposed on a periphery of the rotor, a motor casing in which the rotor and the stator are housed, and a can which partitions an interior of the motor casing into a rotor chamber in which the rotor is disposed and a stator chamber in which the stator is disposed.2. The fan scrubber according to claim 1 , wherein the canned motor further has a liquid inflow port which provides communication between the rotor chamber and the outside claim 1 , and through which a liquid is supplied into the rotor chamber claim 1 , and a liquid ejection port which provides communication between the rotor chamber and the casing claim 1 , and through which the liquid in the rotor chamber is discharged into the casing.3. The fan scrubber according to claim 1 , wherein the casing and the motor casing are directly fastened to each other.4. The fan scrubber according to claim 1 , wherein the fan is directly attached to the main shaft.5. The fan scrubber according to claim 4 , wherein a liquid supply path which communicates with the nozzle and through which the liquid is supplied to the nozzle is formed in ...

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09-01-2020 дата публикации

ELECTRIC GRILL COMPRISING PURIFICATION AND CIRCULATION SYSTEM FOR REMOVING OIL MIST AND SMOKE

Номер: US20200008621A1
Автор: CHOI Seong-Hyuk
Принадлежит:

The present invention relates to an electric grill comprising a purification and circulation system for removing oil mist and smoke and, more particularly, to an electric grill comprising a purification and circulation system for removing oil mist and smoke, wherein: a suction hole and a discharge hole are installed around a grill plate; air containing oil mist, smoke, heat, and smell is suctioned through the suction hole, the suctioned air containing, oil mist, smoke, heat, and smell is introduced into the lower portion of the grill by a suction fan, and comes into contact with water on the upper side of an oil pan containing the water, so as to remove the oil mist, smoke, heat, and smell contained therein, and then the purified air is circulated through the discharge hole installed around the grill plate; a filter is disposed so as to completely remove the oil mist, smoke, heat, and smell; and a Coanda air guide is installed so as to facilitate the contact between the oil mist, smoke, heat, and smell and the water, whereby the oil mist, smoke, heat, and smell can be completely removed. 1. An electric grill having an oil mist and smoke purification and circulation system , the electric grill comprising:a grill main body;an oil pan installed at one inner side of a lower portion of the grill main body to be slidable and in which water is stored;a suction fan provided at one side of the oil pan and configured to suction air including oil mist, smoke, heat, and a smell to blow the air to the water stored in the oil pan;a heat dissipation plate spaced apart in an upward direction from the oil pan and the suction fan to be coupled, spaced apart from inner side wall portions of both sides of the grill main body to be coupled to the inner side wall portions, and provided with a plurality of suction holes and discharge holes formed in upper portions of both side ends of an upper portion of a periphery of a grill plate in a longitudinal direction at intervals;a heater ...

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14-01-2021 дата публикации

COMPLIANT COUPLER OR ADAPTOR

Номер: US20210008323A1
Принадлежит:

A CPAP device includes a flow generator including an outlet, a humidifier including an inlet, and an adaptor connector between the outlet of the flow generator and the inlet of the humidifier. The connector includes a flexible and conformable sealing portion that is movable to accommodate misalignment. 1. An adaptor for a CPAP device , said adaptor communicating pressurized gas between an outlet of a flow generator and an inlet of a humidifier , the adaptor including a main body having first and second ends , the first end structured to be coupled to one of the inlet and the outlet and the second end having a flexible and conformable sealing portion that is movable to accommodate misalignment between the flow generator and the humidifier.2. The adaptor according to claim 1 , wherein the main body includes at least one annular ridge provided on an outer surface of the main body between the first and second ends.3. The adaptor according to claim 2 , wherein the at least one annular ridge includes two annular ridges axially spaced from one another.4. The adaptor according to claim 1 , wherein the first end is removably attachable to the outlet of the flow generator.5. The adaptor according to claim 2 , wherein the adaptor includes first and second components that are coupled to one another.6. The adaptor according to claim 4 , wherein the first component includes a frame attaching portion that provides the first end and the second component provides the second end.7. The adaptor according to claim 6 , wherein the frame attaching portion is relatively firm or rigid compared to the flexible and conformable sealing portion.8. The adaptor according to claim 6 , wherein the frame attaching portion has a plurality of flexible arms that can be flexed to releasably engage the outlet or inlet.9. The adaptor according to claim 6 , wherein the frame attaching portion includes flexible sides.10. The adaptor according to claim 6 , wherein the frame attaching portion is removably ...

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27-01-2022 дата публикации

EXHAUST GAS PURIFICATION SYSTEM

Номер: US20220023796A1
Автор: Yoshida Norifumi
Принадлежит: AIENCE CO., LTD.

The present invention provides an exhaust gas purification system. In the exhaust gas purification system, a shower nozzle disperses liquid toward exhaust gas from an upper portion of the exhaust gas The dispersed liquid is mixed with the exhaust gas and thereafter, the liquid accumulates in a tank and odor and oil content are dissolved by action of microorganism included in the liquid in the tank The shower nozzle is connected to an opening horizontally provided in a nozzle pipe connected to a liquid-supply pipe conduit The exhaust gas purification system includes a nozzle N directed to a downward dispersing direction of the liquid. The nozzle N is placed in the nozzle pipe such that a lower end L of the nozzle N is located higher than a bottom of an inner wall of a pipe conduit of the nozzle pipe According to this, exhaust gas including odor and oil content is purified. 1. An exhaust gas purification system for purifying exhaust gas including odor and oil content , comprising:a purification exhaust gas passage for transporting the exhaust gas including the odor and the oil content;a shower nozzle for dispersing liquid toward the exhaust gas from an upper portion of the exhaust gas transported by the purification exhaust gas passage;a tank for storing the liquid dispersed from the shower nozzle;a liquid-supply pipe conduit connected between the tank and the shower nozzle for supplying the liquid in the tank to the shower nozzle using a pump; andan aeration device for supplying gas including oxygen to the liquid in the tank and for oxidatively decomposing organic material included in the exhaust gas; whereinthe shower nozzle disperses the liquid toward the exhaust gas from the upper portion of the exhaust gas, the dispersed liquid is mixed with the exhaust gas and thereafter, the liquid is accumulated in the tank, the odor and the oil content are dissolved by action of microorganism included in the liquid in the tank,the shower nozzle is connected to an opening ...

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27-01-2022 дата публикации

WATER STORAGE DEVICE AND EXHAUST GAS TREATMENT SYSTEM

Номер: US20220023797A1
Принадлежит:

The water storage device includes: a water storage cavity and a water inlet, the water inlet being configured to feed a solution into the water storage cavity, the water storage cavity being configured to store or discharge the solution and containing a viscous substance; a guide rod and a floating device movable along the guide rod, the floating device being movable as a water level in the water storage cavity changes, and the viscous substance between the guide rod and the floating device restraining movement of the floating device; and a water curtain casing, the water curtain casing being connected to the water inlet and configured to split a part of the solution from the solution fed from the water inlet, and the solution split by the water curtain casing being configured to flush the viscous substance between the guide rod and the floating device. 1. A water storage device , comprising:a water storage cavity and a water inlet, wherein the water inlet is configured to feed a solution into the water storage cavity, the water storage cavity is configured to store or discharge the solution, and the water storage cavity contains a viscous substance;a guide rod and a floating device movable along the guide rod, wherein the floating device is movable as a water level in the water storage cavity changes, and the viscous substance between the guide rod and the floating device restrains movement of the floating device; anda water curtain casing, wherein the water curtain casing is communicated with the water inlet, the water curtain casing is configured to split a part of the solution from the solution fed from the water inlet, and the solution split by the water curtain casing is configured to flush the viscous substance between the guide rod and the floating device.2. The water storage device of claim 1 , wherein the water storage device further comprises a first region and a second region claim 1 , the water curtain casing comprises a first casing and a second casing ...

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14-01-2021 дата публикации

PARTICULATE MATERIAL RETAINING DEVICE AND ATMOSPHERIC ACID GAS NEUTRALIZER AND NEUTRALIZING SUBSTANCE FOR SAID GASES

Номер: US20210008495A1
Принадлежит:

The present invention is directed to a novel mechanical device containing a liquid solution recirculating inside the device in the form of programmed oriented movements which achieve to trap the contaminants resulting from carburant combustion processes, such as particulate material, smoke, soot, fly ashes, greenhouse type gases in order to remove them from the air and to achieve its neutralization thus providing a clean air and suitable to be reinserted into the environment and the substance obtained by the device is reinserted into the production chain as a raw material applicable to a plurality of industries. 1. A particulate material retaining and atmospheric acid gas neutralizing device wherein said device comprises one or more elements called CMOP (Oriented-programmed movement cylinders) indicated with letter A , a capture and transformation tank indicated TCT with letter C; an intermediate pate indicated with letter B between CMOP (A) and TCT (C); and a basic substance storage tank TASB indicated with letter E; an intermediate plate indicated with letter D located between the capture and transformation tank TCT (C) and the basic substance storage tank TASB (E) and a programmed basic substance (SBP).2. The particulate material retaining and atmospheric acid gas neutralizing device according to claim 1 , wherein the elements called CMOP (oriented-programmed movement cylinders) indicated with letter A comprise one or more cylindrical units (A′) which inside them comprise a plurality of perforated plates in varying dimension claim 1 , perforations and angles claim 1 , with design of internal programmed oriented movements of SBP (programmable basic substance) claim 1 , and wherein said cylindrical units (A′) of CMOP (A) subsystem are located on top of TCT (C) subsystem assembled thereto and separated to each other in a symmetrical manner.32457. The particulate material retaining and atmospheric acid gas neutralizing device according to claim 1 , wherein the ...

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15-01-2015 дата публикации

APPARATUS FOR HEAT-TREATING WASTE MATTERS

Номер: US20150014143A1
Принадлежит:

The present invention relates to an apparatus for heat-treating waste matters, and more particularly an ecological apparatus for heat-treating waste matters, which enables waste matters such as various industrial wastes, city-living wastes and various high polymeric chemical wastes to be subjected to heat treatment at a lower temperature under vacuum in a heat-treating vessel without discharging pollutants produced during the heat treatment such as carbon, tar, noxious gases, malodors, and dust by treatment in a filter mechanism. 1. An apparatus for heat-treating waste matters , comprising:{'b': 3', '54', '54', '21', '8', '9', '48', '7', '11, 'an outer box which is configured to input wastes into its interior and heat-treat the wastes at a low temperature under a vacuum environment in a state that a prop is installed at bottom and includes on its upper surface a supply door configured to input wastes, a discharge door installed on its front surface and side surface and configured to discharge the wastes decomposed into carbon states, and a controller installed on its outer circumferential surface and configured to control an electric heater and a waste distributor ;'}{'b': 5', '3', '8', '9, 'an insulation material layer which is installed in the interior of the outer box and is configured to seal the portions using an insulation material except for the supply door and the discharge door ;'}{'b': 4', '5', '8', '9', '32', '2, 'an inner box which is disposed inside the insulation material layer and is configured to supply wastes through the supply door and the discharge door into the interior, which are made from a stainless material so as to prevent corrosion, and discharge the decomposed wastes, wherein a heat discharge tube is externally provided so as to supply into a filter unit the head produced when heat-treating the wastes;'}{'b': 7', '4', '9', '7, 'an electric heater which is formed in a rod shape and is disposed at a front surface, a back surface, a left ...

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03-02-2022 дата публикации

Temperature Controlled Exhaust Steam Water Filter for Coffee Roasters

Номер: US20220032226A1
Принадлежит: VORTX KLEANAIR SYSTEMS

A cyclonic chiller-separator, including a vertically oriented treatment tower defining an interior space and having an exhaust inlet disposed in an upper portion, and a chimney with an exhaust outlet; an exhaust stream conduit in fluid communication with said interior volume of said treatment tower through said exhaust inlet, wherein said exhaust inlet is configured to induce cyclonic fluid motion in an exhaust stream entering said interior volume; a coolant water source; and a plurality of nozzles disposed about interior walls of said treatment tower and in fluid communication with said coolant water source for spraying cooling water into said interior volume above and into an exhaust stream introduced into said interior volume so as to cool, condense, and precipitate volatile organic compounds and organic acids, and to entrain and remove particulates from the exhaust stream. 1. A cyclonic chiller-separator , comprising:a vertically oriented treatment tower defining an interior space and having an exhaust inlet disposed in an upper portion, and a chimney with an exhaust outlet;an exhaust inlet stream conduit in fluid communication with said interior volume of said treatment tower through said exhaust inlet, wherein said exhaust inlet is configured to induce cyclonic fluid motion in an exhaust stream entering said interior volume;a coolant water source; anda plurality of nozzles disposed about interior walls of said treatment tower and in fluid communication with said coolant water source for spraying cooling water into said interior volume above and into an exhaust stream introduced into said interior volume so as to cool, condense, and precipitate volatile organic compounds and organic acids, and to remove particulates from the exhaust stream.2. The cyclonic chiller-separator of claim 1 , wherein said a vertically oriented treatment tower includes an upper cylindrical portion and a conical portion disposed below and integral with said upper cylindrical portion.3. ...

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18-01-2018 дата публикации

PORTABLE AIR PURIFIER

Номер: US20180015310A1
Автор: CHOI Yeon-Ok
Принадлежит:

Disclosed herein is a portable air purifier. The portable air purifier includes: a body; first to third accommodation portions configured to have respective open top surfaces in order to separately accommodate a battery, an air compressor, and water; first to third covers configured to selectively open and close the respective open top surfaces of the first to third accommodation portions; an air inlet connected to the lower portion of the second accommodation portion, and configured to accommodate a pre-filter; a siphon pipe positioned upright inside the water of the third accommodation portion, and configured such that the top thereof is connected to the air outlet of the air compressor; a cannula installed on the top of the third accommodation portion, and configured to supply purified, humidified air to a user; and a power switch configured to control the amount of air to be supplied. 1. A portable air purifier , comprising:a body;first to third accommodation portions configured to have respective open top surfaces in order to separately accommodate a battery, an air compressor, and water inside the body;first to third covers configured to selectively open and close the respective open top surfaces of the first to third accommodation portions;an air inlet formed in a bottom surface of the body, connected to a lower portion of the second accommodation portion via a path, and configured to accommodate a pre-filter;a siphon pipe positioned upright inside the water of the third accommodation portion, and configured such that a top thereof is connected to an air outlet of the air compressor;a cannula installed on a top of the third accommodation portion, and configured to supply purified, humidified air to a user; anda power switch installed on one side of a side surface of the body, and configured to control an amount of air to be supplied while selectively turning on and off driving of the air compressor.2. The portable air purifier of claim 1 , wherein a charging ...

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21-01-2016 дата публикации

MARINE EXHAUST GAS SCRUBBER

Номер: US20160016109A1
Автор: STRANDBERG Peter
Принадлежит: Marine Global Holding AS

A vertical scrubber () for exhaust gas from a marine vessel is described. An exhaust gas tube () is substantially coaxially arranged through the bottom of a lower scrubbing chamber () and is released though an exhaust gas outlet () being coaxially arranged through the top of an upper scrubbing chamber (). A lower scrubbing chamber deflection body () is arranged above the opening of the exhaust gas tube () for redirecting the exhaust gas towards the walls of the scrubber and create turbulent gas flow, where one or more lower chamber water injector(s) (′) is (are) arranged above the lower scrubbing chamber deflection body (), to introduce scrubbing water, and where a lower chamber exhaust gas outlet () is arranged at the top of the lower scrubbing chamber () as a coaxial constriction, for withdrawing the partly scrubbed exhaust gas from the first scrubbing chamber and introducing the gas into the upper scrubbing chamber ().

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03-02-2022 дата публикации

Air Purifying Vent System

Номер: US20220034528A1
Принадлежит:

A filter system includes a liquid filter unit, a HEPA filter unit and an air vent cover. The filter system is installed into an in-room air vent and purifies air received from a forced air system prior to its entrance into a room via the in-room air vent. In some embodiments, the filter system further includes a means for controlling a temperature of the air such that users are able to independently control air temperature in each room of a building. 1. A filter system for purifying air from a forced air system of a building , the forced air system utilizing ductwork installed within the building , the ductwork configured to deliver moving airflow from the forced air system to at least one room of the building via an in-room air vent , the filter system being configured for installation to the in-room air vent , the filter system comprising:a first filter unit, the first filter unit including a first air inlet, a liquid receptacle and a first filtered air outlet, the liquid receptacle configured to store a liquid therein, the first filter unit configured to receive moving airflow via the first air inlet and filter the moving airflow via the liquid before it passes through the first filtered air outlet as once-filtered air;a second filter unit connected to the first filter unit, the second filter unit including a second air inlet, a filtering means, and a second filtered air outlet, the second filter unit configured to receive the once-filtered air and filter the once-filtered air via the filtering means before it passes through the second filtered air outlet as twice-filtered air; andan air vent cover, the air vent cover configured to fasten over the in-room air vent, the air vent cover including a plurality of shutters that are selectively able to be opened and closed to control flow of the twice-filtered air into the at least one room.2. The filter system of claim 1 , further comprising a thermostat control-unit attached to the air vent cover.3. The filter system ...

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17-01-2019 дата публикации

DROPLET GENERATING DEVICE AND DROPLET GENERATING METHOD

Номер: US20190015771A1
Автор: SON Sang Young
Принадлежит:

A droplet generating device includes a tube defining a area in which air including particles flows along a first direction and an evaporation and condensation unit disposed in the tube to intersect with the first direction, the evaporation and condensation unit supplying vapor in the area to supersaturate the area to condense the vapor on surfaces of the particles to form a droplet. Accordingly, droplets may be effectively generated. 1. A droplet generating device comprising:a tube defining a area in which air including particles flows along a first direction; andan evaporation and condensation unit disposed in the tube to intersect with the first direction, the vaporatization and condensation unit supplying vapor in the area to supersaturate the area to condense the vapor on surfaces of the particles to form a droplet.2. The droplet generating device of claim 1 , wherein the evaporation and condensation unit is arranged to be inclined at 5 to 90 degrees with respect to the first direction.3. The droplet generating device of claim 1 , wherein the evaporation and condensation unit is arranged entirely over a vertical section of the area perpendicular to the first direction.4. The droplet generating device of claim 1 , wherein the evaporation and condensation unit has at least one mesh structure including a plurality of wires randomly arranged.5. The droplet generating device of claim 4 , wherein the mesh structure includes a through hole formed between the wires.6. The droplet generating device of claim 4 , wherein each of the wires includes a heating element for heating liquid formed on surfaces thereof.7. The droplet generating device of claim 6 , wherein each of the wires further includes a liquid-absorbing layer capable of holding the liquid as a source of the vapor.8. The droplet generating device of claim 7 , wherein the liquid-absorbing layer includes a hydrophilic material.9. The droplet generating device of claim 6 , wherein the heating element provides heat ...

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17-04-2014 дата публикации

Current monitoring in electrically enhanced air filtration system

Номер: US20140102295A1
Принадлежит: Carrier Corp

A filtration system includes a frame directing a fluid flow through the filtration system. An ionization array is located in the frame and has an ionizer current flowing therethrough. The system further includes a media filter having a plurality of media fibers arranged to capture particles flowing therethrough and a conductive surface located at the media filter and having a filter current flowing therethrough. A comparator is utilized to determine a difference between the ionizer current and the filter current, and compare that difference to a predetermined range.

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16-01-2020 дата публикации

Method and system for controlling soot make in synthesis gas production

Номер: US20200017783A1
Принадлежит: Air Products and Chemicals Inc

The present application provides a method for controlling soot make in a process for the gasification of a liquid carbonaceous feedstock. The gasification process comprises: partially oxidizing the carbonaceous feedstock in a gasifier to produce syngas; guiding the syngas from an outlet of the gasifier to a quench section; cooling the syngas in the quench section to provide cooled syngas; providing the cooled syngas to a soot removal unit; using the soot removal unit to remove solids from the cooled syngas, the soot removal unit providing a cleaned syngas stream and a waste slurry stream comprising the solids removed from the syngas; continuously monitoring a concentration of total suspended solids (TSS) in the waste slurry stream; providing the concentration of total suspended solids (TSS) to a control system. The control system continuously optimizes the gasification process to changes in concentration of total suspended solids, carbon-to-ash ratio, and optional additional parameters.

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10-02-2022 дата публикации

FOREIGN SUBSTANCE COLECTING APPARATUS AND ELECTRICAL STEEL SHEET MANUFACTURING FACILITY INCLUDING SAME

Номер: US20220040790A1
Принадлежит:

A foreign substance collecting apparatus according to one embodiment of the present disclosure may comprise: a collection body unit formed with a suction port through which air including foreign substances flows in and a discharge port through which air removed of the foreign substances is discharged; and a mixing unit provided inside the collection body unit and disposed on a flow passage of the air, and forming a vortex in washing water contained therein by inducing a rotary flow of the air. 112-. (canceled)13. A foreign substance collecting apparatus , comprising:a collection body unit including a suction port through which air including foreign substances flows in and a discharge port through which air removed of the foreign substances is discharged; anda mixing unit provided in the collection body unit, disposed on a flow passage of the air, and forming a vortex in washing water contained therein by inducing a rotary flow of the air.14. The foreign substance collecting apparatus of claim 13 , wherein the mixing unit includes:a mixing chamber portion provided in the collection body unit, having a chamber inlet through which the air flows in and a chamber outlet through which the air is discharged, and containing washing water therein; anda guide portion coupled to an internal portion of the mixing chamber portion and having a curved surface in at least a portion thereof to guide the air in a direction of the washing water and to form at least a portion of the air flow passage in a curved shape.15. The foreign substance collecting apparatus of claim 14 , wherein the guide portion includes:a flat plate member coupled to an upper wall portion of the mixing chamber portion in which the chamber inlet is formed and extending downwardly; anda curved plate member coupled to a lower end of the flat plate member, having at least a portion immersed in the washing water, and forming a curved shape.16. The foreign substance collecting apparatus of claim 15 , wherein the ...

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24-04-2014 дата публикации

System to remove contaminants from air stream

Номер: US20140109766A1
Автор: Yaser K. Barakat
Принадлежит: Individual

The system to remove contaminants from an air stream provides an apparatus and method for removing pollutants, especially carbon, from polluted air. The apparatus and method include a device for thoroughly mixing polluted air with water in a manner to cause the carbon to disassociate from the air and be suspended in the water. The cleansed air is re-circulated for reuse. In one embodiment, clay or sand is utilized to absorb the carbon from the water. As contemplated, the carbon-enriched clay or sand may be used for land reclamation.

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28-01-2021 дата публикации

UREA PRODUCTION PLANT AND SCRUBBING SYSTEM

Номер: US20210024460A1
Принадлежит:

A urea production plant including a synthesis and recovery section has a first evaporation section connected with the synthesis and recovery section and a first condensation section. A granulation section is connected to the first evaporation section. A scrubbing section is connected to the granulation section. A second evaporation section is connected to the scrubbing section. The second evaporation section is connected to the granulation section. A second condensation section is connected to the second evaporation section. A quenching section includes a liquid inlet for the distribution of a quenching liquid is located and connected between the granulation section and the scrubbing section and the quenching section is connected to a quenching liquid providing section and the second condensation section. 112.-. (canceled)13. A urea production plant , comprising:a synthesis and recovery section;a first evaporation section is connected to the synthesis and recovery section and a first condensation section;a granulation section is connected to the first evaporation section;a scrubbing section is connected to the granulation section;a second evaporation section is connected to the scrubbing section and the second evaporation section is connected to the granulation section;a second condensation section is connected to the second evaporation section;a quenching section comprising a liquid inlet for the distribution of a quenching liquid is located between and connected to the granulation section and the scrubbing section, andthe quenching section is connected to a quenching liquid providing section and the second condensation section.14. The urea production plant of wherein the liquid inlet comprises spraying nozzles.15. The urea production plant of wherein the scrubbing section comprises one or more of a dust scrubber claim 13 , an acid scrubber claim 13 , or a cooler scrubber.16. The urea production plant of wherein the dust scrubber is connected with a dust scrubbing ...

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24-04-2014 дата публикации

Coating material spray mist treatment method

Номер: US20140114015A1
Автор: Takeo Kurushima
Принадлежит: UV Tech Co Ltd

Provided is a treatment method that directly and separately separates and recovers a resin phase and an inorganic filler phase from a coating mist for an organic solvent-based coating used in general coating application. In a method that collects an organic solvent-based coating spray mist, the treatment method for the organic solvent-based coating spray mist is characterized by including a step for collecting the spray mist by bringing the organic solvent-based coating spray mist into contact directly and at high speed with water that comprises strong alkaline electrolysis water and in which the pH is maintained at 9 or higher and ORP is +200 mV or lower and a step for thereafter separating a solid portion, which has been formed, from the water that comprises the strong alkaline electrolysis water in which the spray mist has been collected. Additionally, the coating mist can be recovered with excellent efficiency and as a reusable resource.

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01-02-2018 дата публикации

MISTING APPARATUS AND DUST SUPPRESSION SYSTEM EMPLOYING THE SAME

Номер: US20180028958A1
Принадлежит:

The present invention relates to a dust suppression system for use in a container, and a misting apparatus therefor. In one form, the dust suppression system comprises at least one misting apparatus for contributing to the creation of a mist layer for preventing the escape of the dust from the container, the misting apparatus comprising a means for generating an airflow, and a means for producing a mist in the airflow so that the mist is carried by the airflow. 1. A misting apparatus comprising:a body, and a hub,', 'a fan comprising at least one fan blade depending from the hub, and', 'at least one rotor arm extending radially from the hub and comprising a fluid emitter receiving a supply of a fluid, the fluid emitter issuing a jet of a fluid at a distance from the axis of rotation to drive the rotating assembly and the or each fan blade depending therefrom via the rotor assembly to create an airflow into which the or each jet of fluid is issued to form a mist that is carried by the airflow.', 'a turbine comprising at least one rotor assembly comprising], 'a rotating assembly supported by the body so as to be rotatable about an axis of rotation, the rotating assembly comprising2. The misting apparatus of claim 1 , wherein the or each rotor arm is tubular and the fluid emitter is a jet nozzle oriented to discharge the jet to drive rotation of the rotating assembly.3. The misting apparatus of claim 1 , wherein the rotating assembly comprises a plurality of fan blades equi-spaced around the hub to form the fan.4. The misting apparatus of claim 1 , wherein the rotating assembly comprises a plurality of rotor arms equi-spaced around the hub to form the rotor assembly positioned in the airflow issuing from the fan.5. The misting apparatus of claim 1 , wherein the body comprises a shroud for the rotating assembly.6. The misting apparatus of claim 5 , wherein the shroud is tubular claim 5 , and comprises a central axis which is substantially coaxial with the axis of ...

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01-02-2018 дата публикации

GAS-RECYCLING DEVICE, ADDITIVE MANUFACTURING APPARATUS, AND ADDITIVE MANUFACTURING METHOD

Номер: US20180029122A1
Принадлежит: KABUSHIKI KAISHA TOSHIBA

A gas-recycling device according to an embodiment includes a particle remover, a liquid remover, and a supplier. The particle remover brings a mist of liquid into contact with a gas which includes particles and is discharged from an apparatus, to remove the particles from the gas. The liquid remover removes the liquid from the gas having passed through the particle remover. The supplier supplies the gas to the apparatus. 1. A gas-recycling device comprising:a particle remover which brings a mist of liquid into contact with a gas which includes particles and is discharged from an apparatus, to remove the particles from the gas;a liquid remover which removes the liquid from the gas having passed through the particle remover; anda supplier which supplies the gas to the apparatus.2. The gas-recycling device according to claim 1 ,wherein the particle remover includes a receiver, an injector which injects the mist of liquid toward the receiver, and a filter which captures the particles from the liquid including the particles and adhering to the receiver.3. The gas-recycling device according to claim 2 ,wherein the receiver is provided with a discharger from which the liquid including the particles is discharged, andthe filter has the discharged liquid from the discharger pass therethrough.4. The gas-recycling device according to claim 3 ,wherein the filter forms a first wound part, a second wound part, and a third part located between the first part and the second part, the third part through which the liquid discharged from the discharger passes, andthe particle remover includes a detector which detects a weight of the third part of the filter, and a conveyer which conveys the filter from the first part to the second part in accordance with the weight of the third part.5. The gas-recycling device according to claim 2 ,wherein the particle remover further includes a liquid supplier which supplies the liquid filtered through the filter to the injector.6. The gas-recycling ...

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17-02-2022 дата публикации

System and method for integrated removal of multiple pollutants in flue gas with near-zero emission

Номер: US20220048044A1
Принадлежит: HUANENG CLEAN ENERGY RESEARCH INSTITUTE

A system for integrated removal of multiple pollutants includes an economizer, an air preheater, an electrostatic precipitator, a flue gas cooler and a low-temperature adsorber; the economizer has a shell side inlet for feeding boiler flue gas, a tube side inlet for feeding boiler feedwater, and a shell side outlet connected to a tube side inlet of the air preheater; the air preheater has a shell side inlet for introducing boiler intake air, and a tube side outlet connected to the electrostatic precipitator; the electrostatic precipitator has a dust discharge port at a bottom thereof and a flue gas outlet connected to the flue gas cooler; the flue gas cooler has a condensate outlet at a bottom thereof and a cold flue gas outlet at a top thereof and connected to the low-temperature adsorber; and the low-temperature adsorber has a purified flue gas outlet at a tail thereof.

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05-02-2015 дата публикации

SYSTEMS AND METHODS FOR REMOVING PARTICULATE MATTER FROM A GAS STREAM

Номер: US20150033946A1
Принадлежит:

Horizontal duct scrubbing systems for removing particulate matter from a gas are disclosed. The horizontal scrubbing systems may receive a particulate-containing gas stream (e.g., containing PM10 and/or PM2.5 particulate matter), and remove at least some of such particulates by spraying liquid droplets co-current to the flow of the gas stream, where the liquid droplets have a volume median droplet diameter (DV0.5) of from 240 microns to 600 microns, The scrubbing system may be substantially free of flow deflection members between a liquid inlet manifold and a demister. The system may be remove at least 50 wt. % PM10 and/or PM2.5 particulate matter from the gas stream. 1. A system comprising: [{'sup': '3', '(i) a waste gas inlet configured to receive a particulate-containing gas stream having at least 0.3 mg/mof PM2.5 particulate matter; and'}, '(ii) a treated gas outlet configured to discharge a treated gas stream;, '(a) a horizontally disposed housing having (i) wherein the liquid inlet manifold is configured to supply a liquid to the plurality of nozzles;', (A) produce liquid droplets having a volume median droplet diameter (DV0.5) of from 240 microns to 600 microns; and', '(B) spray the liquid droplets co-current to the flow of the gas stream; and, '(ii) wherein the plurality of nozzles are configured to], '(b) a liquid inlet manifold disposed within the horizontally disposed housing, the liquid inlet manifold comprising a plurality of nozzles;'}(c) a demister located proximal the treated gas outlet, wherein the horizontally disposed. housing is substantially free of flow deflection members between the liquid inlet manifold and the demister.2. The system of claim 1 , wherein the plurality of nozzles are configured to produce liquid droplets having a volume median droplet diameter (DV0.5) of not greater than 550 microns.3. The system of claim 1 , wherein the plurality of nozzles are configured to produce liquid droplets having a volume median droplet diameter (DV0 ...

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17-02-2022 дата публикации

A Biomass Gasification System

Номер: US20220049171A1
Автор: WINGREN Anders
Принадлежит:

The present invention relates to a biomass gasification system providing tar and biochar and to a method wherein tars are fixed to the biochar surface. The present invention also relates to use of said system. 111.-. (canceled)12. A biomass gasification system comprising:a biomass gasification reactor having at least one fuel-inlet for injecting carbonaceous fuel and oxidant into the gasification reactor whereby, in a thermo-chemical reaction, synthesis gas is generated, the synthesis gas having a solid particle content and a tar content;wherein the gasification reactor further has a syngas exit pipe via which the synthesis gas is extracted from the gasification reactor, and wherein the thermo-chemical reaction in the gasification reactor further also generates hot biochar;a wet gas cleaning device for receiving the synthesis gas from the syngas exit pipe, the wet gas cleaning device being arranged to direct the synthesis gas through a water mist in order to remove tar from the synthesis gas thereby generating a tar-and-water liquid reject;a mixer for receiving the hot biochar from the gasification reactor and mixing it with water thereby generating a biochar-and-water mixture;a separator device for separating the tar-and-water liquid reject into a tar stream and first water stream; andmeans for conveying the first water stream from the separator device to the mixer thereby exposing any remaining tars in the first water stream to the biochar whereby such tars are fixed to the biochar surface resulting in a cleaning of the first water stream.13. The gasification system according to claim 12 , wherein the separator device for separating the tar-and-water liquid reject is a sedimentation vessel.14. The gasification system according to claim 12 , wherein the separator device for separating the tar-and-water liquid reject is a centrifuge.15. The gasification system according to claim 12 , wherein the separator device for separating the tar-and-water liquid reject is a ...

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09-02-2017 дата публикации

USE OF CLINKER KILN DUST FOR GAS SCRUBBING

Номер: US20170036157A1
Принадлежит:

Methods and apparatus for reducing the content of controlled acidic pollutants in clinker kiln emissions are disclosed. The methods and apparatus include introducing bypass dust produced during production of clinker into one or more locations between the preheater exhaust and the inlet to a dust filter including into a gas conditioning tower. Total bypass dust separated from the kiln exhaust gas may be used. The bypass dust can be separated into a fine and coarse portions. Fine or total bypass dust can be mixed with water to form a bypass dust slurry that can be introduced into the gas conditioning tower. Bypass dust can be used to reduce the content of acidic pollutants such as hydrogen chloride HCl and sulfur oxides SOfrom clinker kiln emissions. 1. A method for reducing the concentration of controlled pollutants in clinker kiln emissions , comprising: the exhaust gases comprise controlled pollutants and entrained dust; and', a preheater exhaust exit;', 'a gas conditioning tower operatively coupled to the preheater exhaust exit; and', 'an inlet to a dust filter operatively coupled to the gas conditioning tower; and, 'the gas conditioning system comprises], 'providing a clinker kiln, wherein the clinker kiln comprises a gas conditioning system configured to process exhaust gases from the clinker kiln, wherein,'} between the preheater exhaust exit and the gas conditioning tower;', 'into the gas conditioning tower;', 'between the gas conditioning tower and the inlet to the dust filter; or', 'a combination of any of the foregoing,, 'introducing bypass dust generated during operation of the clinker kilnthereby reducing the concentration of controlled pollutants in the clinker kiln emissions.24-. (canceled)5. The method of claim 1 , wherein the bypass dust comprises calcined dust and partially calcined dust.6. The method of claim 1 , wherein the controlled pollutants comprise controlled acidic pollutants.7. The method of claim 1 , wherein the bypass dust comprises total ...

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12-02-2015 дата публикации

HYDROCYCLONE WITH FINE MATERIAL REDUCTION IN THE CYCLONE UNDERFLOW

Номер: US20150040761A1
Автор: Krämer Michael
Принадлежит:

A hydrocyclone including an inflow region with a tangential inlet for a feed slurry and having a separating region which adjoins the inflow region and which has an underflow nozzle for discharging coarse materials or coarse granules. At least one additional inlet for feeding a blocking fluid flow is provided in the region of the tangential inlet, the blocking fluid flow and the feed slurry being separated from each other by a lamella at least in the upper region of the hydrocyclone. A method for operating the hydrocyclone is also disclosed. 112463285776110. A hydrocyclone () with an inflow region () having a tangential inflow () for a feed slurry () and with a further separation region () following the inflow region () and having an underflow nozzle () for the discharge of heavy materials or coarse grain , characterized in that a further inflow () for the supply of a barrier fluid stream () is provided , the barrier fluid () and the feed slurry () being combinable into the hydrocyclone () , and in that , before being combined , they are separated from one another by a lamella ().21725. The hydrocyclone () as claimed in claim 1 , characterized in that the barrier fluid stream () can be supplied tangentially to the inflow region () via the at least one further inflow () .3157311810. The hydrocyclone () as claimed in claim 1 , characterized in that the inflow () supplies the barrier fluid stream () tangentially to the separation region () claim 1 , a stepped widening in the hydrocyclone () being provided at the combination point claim 1 , so that the hydrocyclone wall () forms the lamella ().41103. The hydrocyclone () as claimed in one of to claim 1 , characterized in that the lamella () extends into the separation region ().511061976. The hydrocyclone () as claimed in one of to claim 1 , characterized in that there is arranged after the lamella () claim 1 , as seen in the direction of flow of the feed slurry () claim 1 , a flow separator () claim 1 , by means of which ...

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12-02-2015 дата публикации

Nozzle Assembly

Номер: US20150041997A1
Принадлежит: Caldwell Tanks Inc

Various methods and apparatus are disclosed that relate to one or more aspects of an abatement system. In various aspects a nozzle assembly of an abatement system includes at least one rotationally adjustable nozzle tubing having at least one nozzle coupled thereto.

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24-02-2022 дата публикации

DEVICES, SYSTEMS AND METHODS FOR FLUX REMOVAL FROM FURNACE PROCESS GAS

Номер: US20220054970A1
Автор: RICHTER PAUL
Принадлежит:

System and methods for solder flux removal from a gas stream is disclosed. In one aspect, the system includes: a scrubber chamber having a gas inlet and a gas outlet through which the gas stream is introduced into and withdrawn from the scrubber chamber; at least one rinse agent delivery mechanism for introducing a rinse agent into the scrubber chamber for contact with the gas stream, the rinse agent being at a temperature for condensing a first portion of the flux from the gas stream; a condenser portion of the scrubber chamber containing the rinse agent for receiving the gas stream, the rinse agent being at a temperature for condensing a second portion of the flux in the gas stream; and a condensed flux removal apparatus adapted for removal from the scrubber chamber of at least a portion of the rinse agent and the flux which has condensed. 1. A system for removal of a flux in a gas stream , the system comprising:a scrubber chamber having a gas inlet through which the gas stream is introduced into the scrubber chamber, and a gas outlet through which the gas stream is withdrawn from the scrubber chamber;at least one rinse agent delivery mechanism for introducing a rinse agent into the scrubber chamber for contact with the gas stream, the rinse agent being at a temperature for condensing a first portion of the flux from the gas stream;a condenser portion of the scrubber chamber containing the rinse agent for receiving the gas stream, the rinse agent being at a temperature for condensing a second portion of the flux in the gas stream; anda condensed flux removal apparatus adapted for removal from the scrubber chamber of at least a portion of the rinse agent and the flux which has condensed.2. The system of claim 1 , wherein the system comprises a mist separator fluidically connected to the scrubber chamber and comprising at least one component for separation from the gas stream a portion of the rinse agent and the flux remaining in the gas stream flowing therethrough. ...

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07-02-2019 дата публикации

AIR CLEANER

Номер: US20190039009A1
Принадлежит:

Disclosed is an air cleaner capable of removing contaminants in the air by using various air cleaning methods. The air cleaner includes a case including an upper opening through which air is introduced, a lower opening through which purified air is discharged, a filter module detachably mounted in the case and configured to filter out contaminants in the air, an injector injecting water, and an electric dust collecting device located below the injector and collecting dust in the air 1. An air cleaner comprising:a case comprising an upper opening through which air is introduced and a lower opening from which purified air is discharged;a filter module detachably mounted in the case, and filtering out contaminants in the air;an injector located below the filter module and injecting water; andan electric dust collecting device located below the injector and collecting dust in the air.2. The air cleaner of claim 1 , wherein the filter module comprises an oil filter filtering out the oil particles in the air and a pre-filter filtering out dust in the air.3. The air cleaner of claim 2 , wherein the oil filter and the pre-filter are integrally provided to be separated or mounted together.4. The air cleaner of claim 2 , wherein the oil filter and the pre-filter are mounted on a filter frame.5. The air cleaner of claim 1 , wherein an upper water bottle in which water to be supplied to the injector is stored is positioned at an upper portion of the case.6. The air cleaner of claim 5 , wherein an inlet port communicating with the upper opening formed in the case is formed in the upper water bottle.7. The air cleaner of claim 1 , wherein a lower water bottle collecting water injected from the injector is located in a lower portion of the case.8. The air cleaner of claim 7 , wherein a guide member comprising a plurality of guide ribs radially provided to guide the air discharged through the lower opening of the case to the side of the case is positioned in the lower portion of ...

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06-02-2020 дата публикации

METHODS OF SOOT CAPTURE AND ARTICLES FORMED THEREFROM

Номер: US20200038796A1
Принадлежит:

A method of capturing soot includes the steps: combusting a first precursor in a burner to produce a soot stream, the soot stream comprising soot and exiting the burner at an outlet; and directing a capture medium to the soot stream, the capture medium contacting the soot in an impact region, the soot having a temperature greater than 50° C. in the impact region. 1. A method of capturing soot , comprising:combusting a first precursor in a burner to produce a soot stream, the soot stream comprising soot and exiting the burner at an outlet; anddirecting a capture medium to the soot stream, the capture medium contacting the soot in an impact region, the soot having a temperature greater than 50° C. in the impact region.2. The method of claim 1 , wherein the first precursor comprises a silicon-containing compound or a titanium-containing compound.3. The method of claim 1 , wherein the first precursor comprises a siloxane compound.4. The method of claim 1 , wherein the capture medium comprises a liquid.5. The method of claim 1 , wherein the impact region is at a distance less than 1 m from the outlet.6. The method of claim 1 , wherein the combusting further comprises combusting a second precursor in the burner.7. The method of claim 6 , wherein the first precursor comprises a silicon-containing compound and the second precursor comprises a titanium-containing compound.8. The method of claim 1 , wherein the directing further comprises forming a slurry from the soot and the capture medium.9. The method of claim 8 , wherein the forming of the slurry comprises condensing the capture medium.10. The method of claim 1 , wherein the temperature of the soot in the impact region is greater than 200° C.11. A method of capturing soot claim 1 , comprising:combusting a first precursor in a burner to produce a soot stream comprising soot; andpassing a capture medium into the soot stream proximate the burner such that the soot is captured in the capture medium and forms a slurry.12. The ...

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18-02-2021 дата публикации

VACUUM CLEANER

Номер: US20210045603A1
Принадлежит:

A vacuum cleaner includes an odor neutralizer and dust plume abatement system. The odor neutralizer and dust plume abatement system delivers a mist to a working air path of the vacuum cleaner, such as at or upstream of a working air treatment assembly defining a portion of the working air path. 1. A surface cleaning apparatus , comprising:a housing;a working air path through the housing comprising a dirty air inlet and a clean air outlet;a working air treatment assembly defining a portion of the working air path;a suction source defining a portion of the working air path and in fluid communication with the working air treatment assembly; andan odor neutralizer and dust plume abatement system configured to dispense a mist into the working air path and including a receiver including a mount for receiving an aerosol dispenser, the receiver in fluid communication with the working air path at or upstream of the working air treatment assembly.2. The surface cleaning apparatus of wherein the working air treatment assembly comprises a tangential air inlet.3. The surface cleaning apparatus of wherein the aerosol dispenser is provided above the tangential air inlet.4. The surface cleaning apparatus of wherein the working air treatment assembly comprises a cyclone separator and a dirt cup configured to receive and collect contaminants separated by the cyclone separator.5. The surface cleaning apparatus of wherein the receiver further comprises a compartment formed adjacent a sidewall of the dirt cup.6. The surface cleaning apparatus of wherein the dirt cup further comprises an aerosol inlet.7. The surface cleaning apparatus of claim 6 , further comprising a displaceable seal provided at the aerosol inlet on the dirt cup with the displaceable seal in a normally closed position.8. The surface cleaning apparatus of wherein the displaceable seal is adapted to open at a predetermined pressure.9. The surface cleaning apparatus of claim 5 , further comprising the aerosol dispenser ...

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16-02-2017 дата публикации

Liquid Solid Separator

Номер: US20170043280A1
Автор: Vankouwenberg Raymond
Принадлежит:

A liquid solids separator includes a liquid receiving tank, a cascade tank, and a settling tank fluidically connected in series. Wastewater is recycled through the tanks beginning with the liquid receiving tank and contacted with hot gas in the cascade tank to concentrate the wastewater and remove solids that settle in the settling tank. 1. A liquid solids separator comprising:a liquid receiving tank, said liquid receiving tank being connectable to a liquid source to receive and hold liquid from said liquid source;a cascade tank, said cascade tank disposed vertically above said liquid receiving tank;said cascade tank having a water channel that extends the length of said cascade tank, said water channel fluidically connected to said liquid receiving tank for receiving liquid from said liquid receiving tank;said cascade tank further having a hot gas inlet to receive hot gas from a hot gas supply;a settling tank, said settling tank disposed vertically below said cascade tank and extending along the length of said cascade tank, said settling tank fluidically connected to said cascade tank for receiving liquid and hot gas from said cascade tank;said settling tank fluidically connected to said liquid receiving tank by a weir opening extending between said settling tank and said liquid receiving tank for passing fluid in said settling tank to said liquid receiving tank; andan exhaust vent fluidically connected to said settling tank for discharging hot gas received by said settling tank.2. The liquid solids separator of claim 1 , wherein said hot gas inlet extends through said water channel.3. The liquid solids separator of claim 1 , wherein said exhaust vent extends along the length of said settling tank.4. The liquid solids separator of claim 1 , further comprising:a fluid overflow fluidically connected to said liquid receiving tank.5. The liquid solid separator of claim 1 , wherein said settling tank is fluidically connected to said cascade tank along the length of said ...

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15-02-2018 дата публикации

METHOD AND SYSTEM FOR TISSUE TREATMENT WITH CRITICAL/SUPERCRITICAL CARBON DIOXIDE

Номер: US20180044639A1
Автор: DeCaro Mark, Wei Guobao
Принадлежит:

Methods of decontaminating bone tissue and an apparatus or system for the same are provided. The methods can be multi-batch processes and include contacting the bone tissue having contaminants with carbon dioxide to decontaminate the bone tissue and to form carbon dioxide having contaminants. The contaminated carbon dioxide is collected and the contaminants are removed to obtain purified carbon dioxide which can be recycled to treat contaminated bone tissue. The contaminated carbon dioxide can be purified by bubbling it through water and/or an organic solvent followed by acid treatment, filtering and liquefying the carbon dioxide. Contaminants that can be removed from contaminated bone tissue, and in turn, from contaminated carbon dioxide include infectious organisms, bacteria, viruses, protozoa, parasites, fungi and mold or a mixture thereof. 1. A method of decontaminating bone tissue , the method comprising:contacting the bone tissue having contaminants therein with carbon dioxide to decontaminate the bone tissue and form carbon dioxide having contaminants;collecting the carbon dioxide having contaminants; andseparating the contaminants from the collected carbon dioxide.2. A method of decontaminating bone tissue of claim 1 , comprising treating the contaminated bone tissue with ethanol gradient dehydration.3. A method of decontaminating bone tissue of claim 2 , further comprising flushing with liquid carbon dioxide the contaminated bone tissue treated with ethanol gradient dehydration.4. A method of decontaminating bone tissue of claim 3 , further comprising subjecting the contaminated bone tissue to critical point dehydration and/or supercritical carbon dioxide treatment; and releasing the carbon dioxide at a controlled rate.5. A method of decontaminating bone tissue of claim 4 , wherein the temperature and pressure of carbon dioxide is raised to or above 31.1° C. and 1100 psi.6. A method of decontaminating bone tissue of claim 4 , wherein supercritical carbon ...

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08-05-2014 дата публикации

DUST SUPPRESSION APPARATUS

Номер: US20140123852A1
Автор: Hutchinson Brad
Принадлежит: C.W. MACHINE WORX, LTD.

A dust suppression apparatus comprising: (a) a turntable; (b) an engine; (c) a water mist blower comprising an air conduit, a plurality of water nozzles positioned so as to supply a spray of water to the air conduit, and a fan positioned so as to supply a stream of air through the air conduit, the water mist blower and the engine mounted on the turntable, the turntable adapted to permit the air conduit to be rotated horizontally, and the air conduit mounted so as to permit the air conduit to tilt vertically; (d) a water conduit adapted to supply pressurized water to the plurality of water nozzles; (e) a belt drive connected to the engine and adapted to supply power to the fan, and (f) a constant velocity joint connecting the belt drive to the fan. 1. (canceled)2. (canceled)3. (canceled)4. (canceled)5. (canceled)6. (canceled)7. (canceled)8. (canceled)9. (canceled)10. (canceled)11. (canceled)12. (canceled)13. (canceled)14. (canceled)15. (canceled)16. (canceled)17. (canceled)18. (canceled)19. A dust suppression apparatus comprising:a. an engine;b. a water mist blower comprising an air conduit, a plurality of water nozzles positioned so as to supply a spray of water to said air conduit, and a fan positioned so as to supply a stream of air through said air conduit;c. at least one motor adapted to be able to rotate said air conduit to be rotated horizontally and to be able to tilt said air conduit vertically;d. a water conduit adapted to supply pressurized water to said plurality of water nozzles;e. a belt drive connected to said engine and adapted to supply power to said fan, said belt drive being upstream of said air conduit;f. a constant velocity joint connecting said belt drive to said fan; andg. a belt guard, a portion of said belt guard adapted to permit air flow therethrough.21. A method of dust suppression , said method comprising the steps: (1) a trailer having wheels and an upper surface;', '(2) a turntable mounted upon said upper surface;', '(3) an engine;', '( ...

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14-02-2019 дата публикации

METHOD AND APPARATUS FOR REMOVING SULFUR OXIDES FROM GAS

Номер: US20190046925A1
Автор: Luo Jing, Xu Changxiang
Принадлежит:

Methods, apparatus, and compositions for cleaning gas. The use of segmented multistage ammonia-based liquid spray with different oxidation potentials to remove sulfur compounds from gas. The use of different oxidation potentials may reduce unwanted ammonia slip. 2. The apparatus of claim l wherein the first source produces ammonia bearing liquid having an ammonia concentration that is different from the ammonia concentration of the liquid produced by the second source.3. The apparatus of wherein the ammonia bearing liquid of the first source has a pH greater than 4.6.4. The apparatus of wherein the first chamber is configured to be maintained at an operating temperature between 30° C. (86° F.) and 70° C. (158° F.).5. The apparatus of wherein the demister is within the first chamber.6. The apparatus of wherein the spray array includes a pattern of cone-shaped sprays that together are angled consistent with reaching inner walls of a vessel having a width no less than 110% the maximum horizontal width of the first chamber.7. The apparatus of wherein the spray arrays claim 1 , in aggregate claim 1 , are configured to deliver no less than 0.2 L of liquid per cubic meter (1.5 gallon liquid per 1000 cubic feet) of gas flow volume.8. The apparatus of wherein the particle control chamber:is situated downstream from, and in gaseous communication with, the first chamber;is separated from the first chamber by a liquid-collector that allows vapor to pass downstream; and a washing spray array; and', 'a conduit connecting the washing spray array to a particle washing liquid source., 'includes9. The apparatus of wherein:the demister is a first demister; andthe particle control chamber includes a second demister.10. The apparatus of wherein the second demister includes a baffle plate type.11. The apparatus of wherein the second demister includes a ridge type.12. The apparatus of wherein the second demister includes a packing type.13. The apparatus of wherein the second demister ...

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13-02-2020 дата публикации

APPARATUS AND METHOD FOR WASTE GAS SCRUBBING

Номер: US20200047118A1
Принадлежит:

A device for waste gas scrubbing in a urea plant may be configured such that a waste gas passes along a transportation direction in the duct. The duct may include a first region for removing urea dust particles from the waste gas and a second region for removing chemical compounds from the waste gas, which can be integrated by an acid-base reaction into an aqueous liquid phase. A cross-sectional area of the duct extending perpendicular to the transportation direction in the second region may be greater than a cross-sectional area extending perpendicular to the transportation direction in the first region. Further, the device may be configured such that the duct extends horizontally at least in sections and/or the transportation direction of the waste gas through the duct extends horizontally in an installed state. 116.-. (canceled).17. A device for waste gas scrubbing in a urea plant , the device comprising: a first region comprising a first surface enlargement structure disposed in the duct for removing urea dust particles from the waste gas, and', 'a second region comprising a second surface enlargement structure disposed in the duct for removing chemical compounds from the waste gas, which are configured to be integrated by an acid-base reaction into an aqueous liquid phase,, 'a duct with an inlet opening and an outlet opening, wherein the device is configured such that a waste gas passes along a transportation direction in the duct, wherein the duct extends horizontally at least in sections and/or the transportation direction of the waste gas through the duct extends horizontally in an installed state of the device, wherein the duct compriseswherein a cross-sectional area of the duct extending perpendicular to the transportation direction in the second region is greater than a cross-sectional area of the duct extending perpendicular to the transportation direction in the first region.18. The device of wherein the cross-sectional area in the second region has at ...

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23-02-2017 дата публикации

METHOD FOR REMOVING DUST FROM FLUE GAS USING EMULSION LIQUID MEMBRANE

Номер: US20170050143A1
Принадлежит:

A method for removing dust from flue gas using an emulsion liquid membrane, including: a) dissolving a surfactant into a membrane solvent to yield a membrane-forming liquid; stirring and injecting an internal phase liquid into the membrane-forming liquid to yield an emulsion; b) stirring and adding the emulsion to an external phase liquid to disperse the emulsion into the external phase liquid to yield an emulsion liquid membrane; c) allowing the emulsion liquid membrane to contact with a flue gas for removing dust; d) separating a dust-loaded emulsion, and demulsifying the dust-loaded emulsion under an electrostatic field to release the dust from the membrane-forming liquid; recycling the membrane-forming liquid to a); and e) allowing the dust released from the demulsification to precipitate in the form of a slurry and discharging the slurry. 1. A method for removing dust from flue gas using an emulsion liquid membrane , comprising:a) uniformly mixing and dissolving a surfactant in a kerosene or a diesel oil to yield a membrane-forming liquid; stirring and injecting an internal phase liquid into the membrane-forming liquid to yield an emulsion;b) stirring and adding the emulsion to an external phase liquid at a rotational speed of between 200 and 300 rpm to disperse the emulsion into the external phase liquid, to yield an emulsion liquid membrane;c) contacting the emulsion liquid membrane with flue gas to remove dust by counter flow spraying or in a reaction tank;d) separating a dust-loaded emulsion, and demulsifying the dust-loaded emulsion under an electrostatic field to release the dust from the membrane-forming liquid; allowing a resulting mixture to stand for stratification, separating an upper layer to obtain the membrane-forming liquid, and recycling the membrane-forming liquid to a) for preparing the emulsion; ande) allowing the dust released from the demulsification to precipitate at a bottom of a clarifier in the form of a slurry under the action of ...

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25-02-2021 дата публикации

Electrochemical reactor for processes for non-ferrous metal electrodeposition, which comprises a set of apparatuses for gently agitating an electrolyte, a set of apparatuses for containing and coalescing an acid mist, and a set of apparatuses for capturing and diluting acid mist aerosols remaining in the gas effluent of the reactor

Номер: US20210054515A1
Принадлежит: Individual

The invention relates to an electrochemical reactor for continuous copper electrodeposition at high current densities with copper sulfate electrolytes, which comprises devices and systems of functional means that are linked and operated in line, thereby forming a “triad”, for standardising operational conditions in a series of operative parallel reactors. The triad, installed in each existing or new electrolytic container, comprises: a gentle electrolyte agitation system (AGSEL) with means for pulsing control of the aeration volume diffused by bubbling directed into each inter-cathodic space; a “duo” of systems linked in line, which comprises a system of removable anode covers (CAR) for containing, confining and coalescing the acid mist; and an acid mist recycling system (SIRENA) that captures non-coalesced electrolyte aerosols and condenses the steam, returning same to the process, while the pollutants of the gaseous fluid from the reactor are substantially diluted.

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22-02-2018 дата публикации

TYPE OF MULTI-NOZZLE COMBINED ATOMIZING DUST SUPPRESSION EXPERIMENTAL EQUIPMENT UNDER THE EFFECT OF AIRFLOW DISTURBANCE

Номер: US20180052079A9

A multi-nozzle combined atomizing dust suppression experimental equipment under the effect of airflow disturbance includes a simulated roadway device, water spray based dust suppression device and nozzle position adjustor. The simulated roadway device includes an inlet portion, front divergent portion, simulated roadway body, rear convergent portion and outlet portion. The water spray based dust suppression device includes a dust generation and extraction system and spraying system. The dust generation and extraction system includes a dust generation device, exhaust air duct, exhaust fan and outlet air duct while the spraying system includes a water tank, high pressure water pump, confined water pipe, pressure water flow converter and multiple nozzles. The nozzle position adjustor includes a nozzle slide, slide fixing rod, nozzle sliding rack and electrically-controlled drive system which controls the change of horizontal position and vertical position of the nozzles. 1. A multi-nozzle combined atomizing dust suppression experimental equipment under an effect of airflow disturbance , wherein the equipment comprises a simulated roadway device , water spray based dust suppression device and nozzle position adjustor;the simulated roadway device comprises an inlet portion, front divergent portion, simulated roadway body, rear convergent portion and outlet portion;the water spray based dust suppression device comprises a dust generation and extraction system and spraying system,the dust generation and extraction system comprises a dust generation device, exhaust air duct, exhaust fan and outlet air duct,the dust generation device is located at an inlet portion of the simulated roadway device, the inlet portion is connected to the atmosphere, one end of the exhaust air duct is connected to an outlet portion of the simulated roadway device and the other end of the exhaust air duct is connected to the outlet air duct via the exhaust fan;the spraying system comprises a water ...

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25-02-2021 дата публикации

EXHAUST GAS PROCESSING APPARATUS

Номер: US20210057236A1
Принадлежит:

There is provided an exhaust gas processing apparatus configured to cause a processing gas to be exposed to or come into contact with a liquid and thereby detoxify the processing gas. The exhaust gas processing apparatus comprises a suction casing provided with an inlet which the processing gas is sucked into and with an outlet which the processing gas is flowed out from; a liquid tank configured to receive an outlet-side part of the suction casing and store the liquid therein; and one or multiple spray nozzles placed in the liquid tank. The outlet of the suction casing is arranged to be located above a liquid surface of the liquid stored in the liquid tank. The one or multiple spray nozzles are configured to spray the liquid from around the outlet of the suction casing to a peripheral part of the outlet. 1. An exhaust gas processing apparatus configured to cause a processing gas to be exposed to or come into contact with a liquid and thereby detoxify the processing gas ,the exhaust gas processing apparatus comprising:a suction casing provided with an inlet which the processing gas is sucked into and with an outlet which the processing gas is flowed out from;a liquid tank configured to receive an outlet-side part of the suction casing and store the liquid therein; andone or multiple spray nozzles placed in the liquid tank, whereinthe outlet of the suction casing is arranged to be located above a liquid surface of the liquid stored in the liquid tank, and whereinthe one or multiple spray nozzles are configured to spray the liquid from around the outlet of the suction casing to a peripheral part of the outlet.2. The exhaust gas processing apparatus according to claim 1 ,wherein the one or multiple spray nozzles are configured such that an entire surface in the liquid tank, which includes an outer surface of the suction casing above the liquid surface in the liquid tank and a wall of the liquid tank, is covered with the sprayed liquid.3. The exhaust gas processing ...

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10-03-2022 дата публикации

SEPARATION OF PARTICLES OF DIFFERENT SURFACE ENERGIES THROUGH CONTROL OF HUMIDITY

Номер: US20220072466A1
Принадлежит: South Dakota Board of Regents

An impact test apparatus can be used to determine particle interfacial energies with varying relative air humidity. It was observed that capillary condensation increased the adhesive forces of hydrophilic materials. A systems humidity separation window was identified and the differences in interfacial energy for a hydrophilic surface and for a hydrophobic surface can be exploited in order to achieve the separation of particles. Separation and concentration of particles, particularly particles within a mineral ore body, can be obtained. 1. A method for separating particles of different surface energies through control of humidity , comprising:providing a separation platform with a controlled environment for separating a plurality of particles;identifying one or more particle types to separate from the plurality of particles;controlling humidity within the controlled environment based on one or more properties of the one or more particles; andseparating the one or more particle types from the plurality of particles by controlling the humidity within the controlled environment based on the one or more properties of the one or more particles.2. The method of claim 1 , further comprising:treating the plurality of particles with one or more particle treatments to affect a surface energy of the one or more particle types.3. The method of claim 1 , further comprising:treating the controlled environment with one or more treatments to affect a surface energy of the controlled environment.4. The method of claim 1 , further comprising:identifying a specific particle type to separate from the plurality of particles, identifying a surface energy for the specific particle, providing a particle treatment for the specific particle, and controlling the humidity within the controlled environment based on one or more properties of the specific particle and the particle treatment.5. The method of claim 4 , wherein the one or more properties of the specific particle comprises at least ...

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05-03-2015 дата публикации

REMOVING CARBON NANOTUBES FROM A CONTINUOUS REACTOR EFFLUENT

Номер: US20150059571A1
Принадлежит:

Systems and a method for removing carbon nanotubes from a continuous reactor effluent are provided herein. The method includes flowing the continuous reactor effluent through a separation vessel, separating carbon nanotubes from the continuous reactor effluent in the separation vessel, and generating a stream including gaseous components from the continuous reactor effluent. 1. A system for removing carbon nanotubes from a continuous reactor effluent , comprising a separation vessel configured to:isolate the carbon nanotubes from the continuous reactor effluent; andgenerate a stream comprising gaseous components from the continuous reactor effluent.2. The system of claim 1 , wherein the separation vessel is configured to:isolate catalyst particles from the continuous reactor effluent; andreturn the catalyst particles to a reactor.3. The system of claim 2 , wherein the reactor comprises a fluidized bed reactor that is configured to accept the catalyst particles from the separation vessel.4. The system of claim 1 , wherein the stream comprises residual carbon nanotubes.5. The system of claim 1 , wherein the separation vessel comprises a gravity separation vessel.6. The system of claim 5 , wherein the gravity separation vessel comprises a cyclonic separator.7. The system of claim 6 , wherein the cyclonic separator comprises a single cyclone.8. The system of claim 6 , wherein the cyclonic separator comprises multiple cyclones.9. The system of claim 5 , wherein the gravity separation vessel comprises a drift separator.10. The system of claim 1 , wherein the separation vessel comprises an electrostatic separation unit configured to impose an electric field.11. The system of claim 1 , wherein the separation vessel comprises a magnetic separation vessel.12. The system of claim 1 , wherein the separation vessel comprises a filter.13. The system of claim 12 , wherein the filter comprises a sintered ceramic filter claim 12 , a sintered metal filter claim 12 , a fabric bag ...

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03-03-2016 дата публикации

AIR WASHER

Номер: US20160059175A1
Принадлежит:

An air washer includes an outer case having an air suction port, a water tub disposed in the outer case to store water, a humidification unit disposed in the water tub, a display unit disposed so as to be spaced apart from the outer case to form an air discharge port, the display unit having a water supply port, through which water is supplied, an inner case located at an upper side of the water tub, the inner case having an air channel, connecting the air suction port with the air discharge port, and a water channel, along which the water injected through the water supply port is guided to the water tub, and a blower disposed in the inner case to blow air suctioned through the air suction port to the air discharge port. 1. An air washer comprising:an outer case having an air intake port;a water tub provided in the outer case to store water;a humidification module disposed in the water tub;a display module disposed so as to be spaced apart from the outer case to form an air discharge port, the display module forming a water supply port to allow water to be supplied;an inner case located at an upper side of the water tub, the inner case having an air channel, connecting the air intake port with the air discharge port, and a water channel, along which the water injected through the water supply port is guided to the water tub; anda blower provided in the inner case to blow air suctioned through the air intake port to the air discharge port.2. The air washer according to claim 1 , wherein the air channel is formed inside the inner case claim 1 , and the water channel is formed outside the inner case.3. The air washer according to claim 1 , wherein the display module is spaced apart from the outer case by a predetermined distance to form the air discharge port.4. The air washer according to claim 1 , wherein the water supply port is formed through the display module in a vertical direction claim 1 , and the air discharge port is disposed outside the display unit.5. The ...

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03-03-2016 дата публикации

EXHAUST GAS PROCESSING SYSTEM AND PROCESSING METHOD

Номер: US20160059185A1
Автор: NAITO Toshiyuki
Принадлежит: IHI CORPORATION

An exhaust gas processing system having excellent durability and good desulfurization and denitration efficiency is provided to efficiently recover carbon dioxide with high purity and reduced processing costs. The exhaust gas processing system has: a desulfurization unit removing sulfur oxides from the exhaust gas by the limestone-gypsum method; a denitration unit arranged downstream of the desulfurization unit to remove nitrogen oxides from the exhaust gas; a carbon dioxide recovery arranged downstream of the denitration unit to recover carbon dioxide from the exhaust gas; and an oxygen supply unit supplying to the desulfurization unit with a faction of the recovered gas from the carbon dioxide recovery unit as oxygen source. An analyzer is used to monitor the purity and recovery ratio of the carbon dioxide recovered, and the supplied ratio of recovered gas is adjusted, based on the monitored purity and recovery ratio. 1. An exhaust gas processing system , comprising:a desulfurization unit that removes a sulfur oxide from an exhaust gas by a limestone/gypsum method;a denitration unit arranged in a subsequent stage from the desulfurization unit to remove a nitrogen oxide from the exhaust gas;a carbon dioxide recovery unit arranged in a subsequent stage from the denitration unit to recover carbon dioxide from the exhaust gas; andan oxygen supply unit that supplies a faction of a post-recovery gas discharged from the carbon dioxide recovery unit, as an oxygen source, to the desulfurization unit.2. The exhaust gas processing system as set forth in claim 1 , wherein the oxygen supply unit comprises:a monitor having an analyzer for monitoring the purity and the recovery ratio of the recovered carbon dioxide recovered by the carbon dioxide recovery unit; andan adjusting apparatus that adjusts the proportion of the fraction of the post-recovery gas to be supplied to the desulfurization unit in the post-recovery gas discharged from the carbon dioxide recovery unit, based on ...

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21-02-2019 дата публикации

Dust removal and desulfurization of fcc exhaust gas

Номер: US20190054419A1

Apparatus and methods for denitrification and desulfurization of and dust removal from an FCC tail gas by an ammonia-based process. The apparatus may include a first-stage waste heat recovery system, a denitrification system, a dust removal and desulfurization system, a tail gas exhaust system, and an ammonium sulfate post-processing system. The dust removal and desulfurization system may include a dedusting tower and an absorption tower disposed separately. The top and the bottom of the absorption tower may be connected respectively to the tail gas exhaust system and the ammonium sulfate post-processing system. The absorption tower may include sequentially, from bottom to top, an oxidation section, an absorption section, and a fine particulate control section. The methods may be implemented with the apparatus.

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04-03-2021 дата публикации

TWO-PHASE SEPARATOR DEVICE FOR REMOVING CONDENSATE OR PARTICULATE FROM A GAS STREAM

Номер: US20210060467A1
Принадлежит:

This disclosure provides a two-phase separator device for separating condensate or particulate from a gas stream. In some implementations, the separator device removes water from air and may operate under micro-gravity conditions. The gas stream flows through the two-phase separator device and passes through a rotatable vane assembly along a flow path without being redirected in another flow path. Condensate or particulate in the gas stream is impacted by a plurality of vanes of the rotatable vane assembly, and the condensate is captured by features formed within the plurality of vanes. The captured condensate is accelerated radially outwardly along the each of the plurality of vanes towards a sloped inner wall, and further moved along the sloped inner wall in a direction against the flow path of the gas stream during rotation. 1. A two-phase separator device , the device comprising:a housing having an inlet for receiving a two-phase mixture, wherein the two-phase mixture includes a gas stream and condensate or particulate; and a rotatable drum configured to rotate about an axis of rotation along an axial direction of the two-phase separator device; and', 'a plurality of vanes arranged about the axis of rotation and extending radially outwardly from the axis of rotation to the rotatable drum, wherein the plurality of vanes are connected to the rotatable drum at an inner wall that is sloped., 'a rotatable vane assembly within the housing and along a flow path of the gas stream, the rotatable vane assembly comprising2. The device of claim 1 , wherein the rotatable vane assembly further comprises: a motor configured to drive rotation of the rotatable drum about the axis of rotation.3. The device of claim 2 , wherein the motor is configured to drive rotation of the rotatable drum at a rotational velocity to capture all or a substantial portion of the condensate or particulate from the gas stream without redirecting the gas stream along another flow path.4. The device of ...

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02-03-2017 дата публикации

AIR CLEANING FOUNTAIN

Номер: US20170056808A1
Автор: HAYDEN John B.
Принадлежит:

A fountain is provided. The fountain includes: a drape; a catch basin located below the drape and oriented to catch a fluid flowing at least one of over and through the drape; a conduit fluidly connected to the catch basin forming a circuit to return the fluid in the catch basin to flow at least one of over and through the drape; a pump fluidly connected to the circuit and configured to pump the fluid through the conduit; and at least one of the drape, catch basin, conduit includes surface oriented to contact the fluid and the surface includes at least one of copper and silver. 1. An air cleaning device comprising:a perforated tube having a first and second end, the perforated tube having an outer surface and inner surface, the inner surface defining an interior space;a catch basin located at the first end of the perforated tube;a fluid distributor located at the second end of the perforated tube and configured to distribute a fluid along at least one of the outer and inner surfaces;an air moving device configured to move air through the inner space along a length of the perforated tube; anda pump and conduit system configured to circulate fluid from the catch basin to the fluid distributor.2. The air cleaning device of claim 1 , further comprising a ultraviolet light source configured to shine ultraviolet light on fluid located on at least one of any of the following: the outer surface of the perforated tube claim 1 , the inner surface of the perforated tube and in the catch basin.3. The air cleaning device of claim 1 , wherein the fluid distributor is oriented on the second end of the perforated tube and configured to distribute a fluid on both the inner and outer surface of the perforated tube.4. The air cleaning device of claim 1 , wherein the perforated tube defines a plurality of holes extending through the inner and outer surfaces and providing fluid communication between the interior space of the perforated tube and a space outside of the perforated tube.5. ...

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02-03-2017 дата публикации

Air cleaning device using water as filter

Номер: US20170056819A1
Автор: I-Ta Tsai, Tsung-Hsin Tsai
Принадлежит: Individual

An air cleaning device using water as a filter comprises a water tank, a water pump, a pressure equalizer and air-inhale tubes. The water tank includes an accommodation space for containing water, air inlets and air outlets. A cover hoods the water tank and has a water storage tank and air inlets. The water pump is disposed inside the water tank and connected with the pressure equalizer. Jet pipes of the pressure equalizer respectively interconnect with the air inlets through the air-inhale tubes. The water pump sucks the water in the accommodation space. Through the air-inhale tubes, the jet pipes inhale air in a jet fashion from exterior of the air inlets disposed in multiple directions. The air cleaning device can filter out the impurities in the air and fast clean the air of a large space. The present invention uses water as the filter and favors environmental protection.

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01-03-2018 дата публикации

MULTISTAGE THERMOLYSIS METHOD FOR SAFE AND EFFICIENT CONVERSION OF E-WASTE MATERIALS

Номер: US20180057751A1
Принадлежит:

Clean, safe and efficient methods, systems, and processes for utilizing thermolysis methods to processes to convert various e-waste sources into Clean Fuel Gas and Char source are disclosed. The invention processes e-waste sources, such as for example whole circuit boards, to effectively shred and/or grind the waste source, and then process using thermolysis methods to destroy and/or separate halogen and other dangerous components to provide a Clean Fuel Gas and Char source, along with the ability to recover precious metals and other valuable components from the Char. 1. A method for converting an electric and/or electronic waste source to a Clean Fuel Gas and Char source comprising:inputting an electric and electronic waste source into a thermolysis system to generate a Clean Fuel Gas source and Char source;wherein the thermolysis system comprises at least two reactors, an oil/water separator, an oil/tar cracker, and at least two gas scrubbers;wherein the reactors have a process temperature of about 300° C.-800° C. and generate tars and oils;wherein all of the oils and tars are separated in the oil/water separator and at least two gas scrubbers, thereafter cracked in the oil/tar cracker, and send back to the secondary reactor to generate the Clean Fuel Gas source; andwherein the Clean Fuel Gas source and Char source are substantially-free of halogenated organic compounds and do not contain oils and/or tars.2. The method of claim 1 , wherein the electric and electronic waste source comprises printed wiring boards claim 1 , thermoplastic materials claim 1 , flat panel displays claim 1 , printer cartridges and/or cassette claim 1 , or combinations thereof.3. The method of claim 1 , wherein the reactors have a process temperature of about 400° C.-800° C. for the waste source to undergo at least partial gasification.4. (canceled)5. The method of claim 1 , wherein the reactors have a pressure range from about 10 to about 100 millbar.6. The method of claim 1 , wherein the ...

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28-02-2019 дата публикации

Gas/Liquid Heat and Material Exchange in the Presence of Entrained Solids

Номер: US20190060819A1
Автор: Baxter Larry, Sayre Aaron
Принадлежит:

A device and a method for contacting gases and liquids in the presence of entrained solids is disclosed. A vertical, cylindrical vessel of a first diameter with a bubbling apparatus is provided comprising an outer apparatus diameter, surrounded by an annular space, a height above the bottom of the vessel. The outer apparatus diameter is between ⅓ and ¾ of the first diameter. The height is less than ½ of the difference between the first diameter and the outer apparatus diameter. The carrier gas bubbles upward out of the bubbling apparatus. A fluid passing through the vessel transitions from turbulent, to laminar or transitional, back to turbulent flow due to the changes in flow path areas. 1. A device for contacting gases and liquids in the presence of entrained solids comprising:a vertical, cylindrical vessel of a first diameter comprising an upper region, a lower region, and an intermediate region between the upper region and the lower region, wherein the upper region comprises a fluid inlet and a gas outlet, the lower region comprises a fluid outlet, and the intermediate region comprises an annular space outside a vertical, cylindrical bubbling apparatus;the bubbling apparatus comprising a gas inlet, a gas outlet, and an outer apparatus diameter, wherein the gas outlet comprises a perforated surface of the bubbling apparatus;the outer apparatus diameter being between ⅓ and ¾ of the first diameter and a height of the lower region being less than ½ of the difference between the first diameter and the outer apparatus diameter.2. The device of claim 1 , wherein the perforated surface comprises a bubble plate claim 1 , a bubble tray claim 1 , a sparger claim 1 , or combinations thereof.3. The device of claim 1 , wherein:a carrier gas passes into the bubbling apparatus through the gas inlet and bubbles through the perforated surface into the upper region, the carrier gas passing through the upper region and out of the gas outlet;a fluid passes into the vessel through ...

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28-02-2019 дата публикации

DUST REMOVAL SYSTEM FOR CHIMNEY OF MIXER

Номер: US20190060856A1
Принадлежит:

The present invention provides a dust removal system for a chimney of a mixer. The system includes a dust removal water tank and a first pipeline. One end of the first pipeline is communicated with an outlet of the chimney at a tail of the mixer, and the other end is inserted into the dust removal water tank. A water inlet and a water outlet are provided in the dust removal water tank. An exhaust port for discharging filtered gas is provided in an upper part of the dust removal water tank. The system does not need additional power, and is energy-saving and environmentally friendly. Water vapor discharged facilitates the sedimentation of dust particles in the mixer, thereby reducing loss of raw material mixture, making sintering quality more stable and solving a problem that gas discharged in prior arts contains more powder and pollutes the environment. 1. A dust removal system for a chimney of a mixer , comprising a dust removal water tank and a first pipeline; wherein one end of the first pipeline is communicated with an outlet of the chimney at a tail of the mixer , and the other end is inserted into the dust removal water tank; a water inlet and a water outlet are provided in the dust removal water tank; and an exhaust port for discharging filtered gas is also provided in an upper part of the dust removal water tank.2. The dust removal system of claim 1 , wherein the dust removal system further comprises a sedimentation chamber claim 1 , a water pump and a second pipeline; the water outlet in the dust removal water tank is communicated with a liquid suction port of the water pump; and one end of the second pipeline is communicated with a liquid outlet port of the water pump claim 1 , and the other end of the second pipeline is communicated with a liquid inlet of the sedimentation chamber.3. The dust removal system of claim 2 , wherein the dust removal system further comprises a third pipeline and a valve installed on the third pipeline; the sedimentation chamber ...

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12-03-2015 дата публикации

Device and Method for Evacuating a Chamber and Purifying the Gas Extracted From Said Chamber

Номер: US20150068399A1
Принадлежит:

A device evacuates a chamber and purifies the gas extracted from said chamber of any foreign substances. The device comprises a dry-condensing vacuum pump having an input connected to the chamber to be evacuated and is suitable for maintaining the input pressure at a constant level at the output despite variable conditions. An intermediate line which connects to the output of the dry-condensing vacuum pump and a liquid ring vacuum pump, the input of which is connected to the intermediate line, are additionally provided. A corresponding method makes it possible to purify the gas of any foreign substances reliably and effectively. 1. A device for evacuating a chamber and for purifying a gas that is extracted from the chamber of entrained foreign substances comprising:a. a dry-compression vacuum pump having a chamber to be evacuated, an inlet connected to the chamber to be evacuated and an outlet and which is suitable for keeping the inlet pressure constant despite variable conditions at the outlet;b. an intermediate line which connects to the outlet of the dry-compression vacuum pump; andc. a liquid ring vacuum pump, having an inlet connected to the intermediate line.2. The device as claimed in claim 1 , characterized in that the dry-compression vacuum pump is designed to generate a pressure of between 1 mbar and 40 mbar at the inlet side.3. The device as claimed in claim 1 , characterized in that the dry-compression vacuum pump is designed to generate a pressure of between 80 mbar and 300 mbar in the intermediate line.4. The device as claimed in claim 1 , characterized in that an opening for the supply of scavenging gas is provided at the outlet of the dry-compression vacuum pump and/or in the intermediate line.5. The device as claimed in claim 4 , wherein the dry-compression pump has a housing characterized in that the opening is a gap that exists between a shaft and the housing of the dry-compression vacuum pump.6. The device as claimed in claim 1 , characterized ...

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27-02-2020 дата публикации

Fan scrubber and controlling method of fan scrubber

Номер: US20200061516A1
Автор: Yuki TSUJIGUCHI
Принадлежит: Toshiba Memory Corp

According to one embodiment, a fan scrubber includes an inlet pipe to be connected to a post-stage side of a vacuum pump, in a state where a film preparation apparatus is arranged at a pre-stage before the vacuum pump, a process chamber connected to the inlet pipe, and containing a fan connected to a main shaft of a motor, a heater configured to heat the inlet pipe, and a controller configured to control turning on/off of the heater. The controller turns off the heater, when a signal received from the film preparation apparatus has been switched from a film preparation signal to a cleaning signal.

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27-02-2020 дата публикации

MARINE EXHAUST GAS SCRUBBING & BALLAST WATER DISINFECTION SYSTEM

Номер: US20200061527A1
Автор: Gong Terry
Принадлежит: Earth Renaissance Technologies, LLC

A combination marine exhaust gas scrubber and ballast disinfection system using seawater/water surrounding a ship to reduce/scrub smoke-stack emissions and produce a disinfected seawater/water for ballast, which can then be periodically or continually discharged back into the seawater/water body without concern for the spread of non-invasive species. 1. A marine exhaust gas scrubbing and ballast water disinfection method removing engine and boiler exhaust gas flow contaminants including sulfur dioxide (SO) , nitrous oxides (NOx) , oils , and small particles , with seawater/water containing invasive species to capture and use sulfur dioxide to suppress the transfer and spread of invasive species when used as ships ballast before discharged comprising:{'sub': '2', 'a. drawing in seawater/water and directing the seawater/water into a wet scrubber with a plurality of nozzles located in the funnel of a ship to spray seawater/water into the exhaust gas flow from the ship engines or boilers to absorb SO, NOx, leaving the wet scrubber and entrain oils and suspended solids in the seawater/water,'}b. separating the oils and suspended solids in the seawater/water forming an acid treated seawater/water,c. adding sufficient sulfur dioxide to the acid treated seawater/water to suppress the invasive species,d. raising the pH of the acid treated seawater/water for use as ships ballast, ande. periodically or continuously discharging the ships ballast back into the sea/water.2. A marine exhaust gas scrubbing and ballast water disinfection method according to claim 1 , including a droplet separator located near the top of the wet scrubber to capture entrained water droplets.3. A marine exhaust gas scrubbing and ballast water disinfection method according to claim 1 , including a heat exchanger or hot air injector positioned near the exhaust gas flow leaving the wet scrubber to heat exiting exhaust gas for reducing water vapor plumes leaving the scrubber.4. A marine exhaust gas ...

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08-03-2018 дата публикации

Process for making solid particles

Номер: US20180065073A1
Принадлежит: Procter and Gamble Co

The invention relates to a process of creating particles of controlled size by creating them in the interstitial regions in a continuous liquid phase that contains a second, inert gas phase at high volume fraction; namely a foam. The second phase creates a physical barrier that limits the aggregation of formed particles beyond the size of the narrow interstitial regions occupied by the continuous phase. This technique is useful when the particles normally create large aggregates due to the fast nature of the reaction and the strong attractions between the formed particles, and for enhancing the deposition of high-value materials by connecting them to coacervates of controlled size.

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28-02-2019 дата публикации

SYSTEM, METHOD AND A FILTER FOR VENTILATION

Номер: US20190063756A1
Принадлежит:

A ventilation system configured to be self-cleaning, wherein said ventilation system includes: a filtration unit configured to filter exhaust air led through it by at least one air duct; a condensation chamber configured to collect condensation water from the exhaust air; a heating element configured to heat the condensation water to a temperature equal to or above 65 degrees Celsius; and a sprinkler system configured to sprinkle the condensation water in one or more of the filtration unit, at least one of the at least one air duct, and/or the condensation chamber, wherein the ventilation system is thus configured to provide a self-cleaning of the ventilation system utilizing the condensation water. 124-. (canceled)25. A filtration unit configured to filter exhaust air led through it by at least one air duct , said filtration unit comprising at least one triple action filter , said filter comprising a plurality of pipes , wherein the pipes are arranged in at least two pipe rows , whereinthe pipe rows are arranged so that the pipes in one row overlap with the pipes in an adjacent pipe row to enhance the likelihood of a collision between a pipe and a particle in the flow, and whereinthe pipes are arranged to be cooled by receiving and transporting a coolant, whereby the pipes will have a cooling effect on the flow of gas and any particles in the flow thereby providing an attraction force between the particles for increasing the likelihood of a collision with a pipe, and whereinat least one of the pipes is formed so that a low pressure area is formed behind the pipe when subjected to a flow thereby providing a filtering effect by sucking particles into the low pressure region and thereby causing a collision with the pipe.26. The filtration unit according to claim 25 , wherein the triple action filter is arranged to collect condensation claim 25 , the filter thereby acting as a condensation chamber of the ventilation system claim 25 , the condensation chamber being ...

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09-03-2017 дата публикации

APPARATUS FOR PURIFYING WASTE GASES FOR INTEGRATED SEMICONDUCTOR

Номер: US20170065934A1
Принадлежит:

An apparatus for purifying waste gases for an integrated semiconductor is provided, which includes a cover including a burner mounted thereon to generate a flame and a plurality of waste gas inlet pipes formed on a circumference of the burner to make waste gases flow therethrough; a reactor including upper and lower openings formed thereon so that the cover is detachably coupled to the upper opening, a converging member tapered to have a smaller diameter as going toward a lower portion thereof, and a transport pipe vertically arranged to communicate with an apex of the converging member, in which a water curtain is formed to prevent accumulation of by-products, to burn and discharge the inflow waste gases; and a cleaning portion integrally formed in the reactor to water-clean the burnt waste gases that are discharged into the reactor after passing through the transport pipe to collect particles. Since the burner, the reactor, and the scrubber are integrally formed in a body. 1. An apparatus for purifying waste gases for a semiconductor , comprising:a cover including a burner mounted thereon to generate a flame and a plurality of waste gas inlet pipes formed on a circumference of the burner to make waste gases flow therethrough;a reactor including upper and lower openings formed thereon so that the cover is detachably coupled to the upper opening, a converging member tapered to have a smaller diameter as going toward a lower portion thereof, and a transport pipe vertically arranged to communicate with an apex of the converging member, in which a water curtain is formed to prevent accumulation of by-products, to burn and discharge the inflow waste gases; anda cleaning portion integrally formed in the reactor to water-clean the burnt waste gases that are discharged into the reactor after passing through the transport pipe to collect particles.2. The apparatus for purifying waste gases according to claim 1 , wherein the cleaning portion comprises:a partition member ...

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19-03-2015 дата публикации

CLEANSING DEVICE

Номер: US20150075385A1
Автор: DAI WEI-ZHONG, OU XIAO-LU
Принадлежит:

A cleansing device used to purify waste gas includes a housing having an air inlet and an exhaust vent, a filter and a spraying module positioned in the housing. The spraying module is positioned on top of the filter to spray on the filter. The cleansing device further comprises two parallel support members mounted on two opposite inner surfaces of the housing. The filter is slidably mounted on the support members to slide into or out of the housing. 1. A cleansing device used to purify waste gas , comprising:a housing having an air inlet and an exhaust vent;a filter positioned in the housing; anda spraying module positioned on top of the filter to spray on the filter;wherein the cleansing device further comprises two parallel support members mounted on two opposite inner surfaces of the housing;wherein, the filter is slidably mounted on the support members to slide into or out of the housing.2. The cleansing device as claimed in claim 1 , wherein each of the support members includes a guiding rail claim 1 , and two ends of the filter are clamped into the guiding rails.3. The cleansing device as claimed in claim 1 , wherein the housing further defines an assembly hole claim 1 , the two support members are positioned on two sides of the assembly hole claim 1 , and the filter is assembled in the housing through the assembly hole.4. The cleansing device as claimed in claim 3 , wherein the cleansing device further includes a seal cover detachably mounted on the housing claim 3 , and the seal cover seals the assembly hole to prevent the waste gas from flowing out of the assembly hole.5. The cleansing device as claimed in claim 1 , wherein the cleansing device further includes a fan mounted on the housing corresponding to the air inlet claim 1 , used to lead the waste gas flowing into the housing.6. The cleansing device as claimed in claim 1 , wherein a bottom portion of the housing includes a storage container to receive the water sprayed by the spraying module.7. The ...

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24-03-2022 дата публикации

SYSTEM FOR SEPARATION OF GAS AND SOLID

Номер: US20220088517A1
Принадлежит: HIGHLIGHT TECH CORP.

A system for separation of gas and solid at least comprises a cyclone trapping device and a negative pressure waste gas treatment device. The cyclone trapping device has a gas inlet and outlet chamber and a cyclone separation chamber communicating with each other, and the gas inlet and outlet chamber has a gas inlet tube communicating with a process waste gas source and a gas outlet tube communicating with the negative pressure waste gas treatment device. A process waste gas generated by the process waste gas source is introduced into the gas inlet and outlet chamber through the gas inlet tube to generate cyclones, thereby separating a portion of solid particles from the process waste gas, and transmitting the process waste gas to the negative pressure waste gas treatment device through the gas outlet tube in order to further separate the remaining solid particles from the process waste gas. 1. A system for separation of gas and solid at least comprising:a waste gas treatment device, which is a negative pressure waste gas treatment device that ejects a washing liquid to generate a suction force during washing operation of the negative pressure waste gas treatment device; and{'claim-text': ['a gas inlet and outlet chamber, the gas inlet and outlet chamber having a gas inlet tube communicating with a process waste gas source and a gas outlet tube communicating with the waste gas treatment device; and', 'a cyclone separation chamber, the cyclone separation chamber communicating with the gas inlet and outlet chamber, wherein a process waste gas generated by the process waste gas source is introduced into the gas inlet and outlet chamber via the gas inlet tube by the suction force, so that the process waste gas generates cyclones in the gas inlet and outlet chamber and/or the cyclone separation chamber, and solid particles with a particle size greater than a preset value are separated from the process waste gas by centrifugal force, wherein the gas outlet tube is used to ...

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24-03-2022 дата публикации

WASTE GAS ABATEMENT TECHNOLOGY FOR SEMICONDUCTOR PROCESSING

Номер: US20220088529A1
Автор: Mahawili Imad
Принадлежит:

A semiconductor waste abatement system for a semiconductor processing system includes a vacuum pump, an abatement apparatus having an abatement chamber in fluid communication with a source of semiconductor waste gas from the semiconductor processing chamber, and with the abatement chamber configured to ionize the waste gas and to exhaust ionized gas. The abatement system further includes a filter apparatus with a filter chamber, which forms a liquid reservoir. The inlet of the filter apparatus is in fluid communication with the outlet of the abatement chamber and the liquid reservoir, and the outlet of the filter apparatus is in communication with the inlet of the vacuum pump, wherein the filter chamber is under a vacuum, and wherein semiconductor waste gas is ionized in the abatement chamber and then filtered by the filter apparatus prior to input to the vacuum pump. 1. A semiconductor waste abatement system for a semiconductor processing system , the semiconductor processing system having a semiconductor processing chamber , said semiconductor waste abatement system comprising:a vacuum pump having a pump inlet and a pump outlet;an abatement apparatus having an abatement chamber including an inlet and an outlet, said inlet adapted for fluid communication with a source of semiconductor waste gas from the semiconductor processing chamber, and said abatement chamber configured to ionize the waste gas and to exhaust ionized gas at said output; anda filter apparatus including a filter chamber, an inlet, and an outlet, said filter chamber forming a liquid reservoir, and said inlet of said filter apparatus in fluid communication with said outlet of said abatement chamber and said liquid reservoir, and said outlet in communication with said vacuum pump inlet, wherein the filter chamber is under a vacuum, and wherein semiconductor waste gas is ionized in said abatement chamber and then filtered by said filter apparatus prior to input to said vacuum pump.2. The semiconductor ...

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16-03-2017 дата публикации

Dust collection apparatus and dust collection system

Номер: US20170072437A1
Автор: Hideaki Sakurai
Принадлежит: Toshiba Corp

According to one embodiment, a dust collection apparatus includes a liquid supplier, a first member, and a liquid recoverer. One end of the first member is connected to the liquid supplier, one other end of the first member is connected to the liquid recoverer. The first member is conductive. The first member has a first surface including a plurality of trenches.

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15-03-2018 дата публикации

MULTISTAGE THERMOLYSIS METHOD FOR SAFE AND EFFICIENT CONVERSION OF CARPET/RUG, POLYMERIC MATERIALS AND OTHER WASTE SOURCES

Номер: US20180072955A1
Принадлежит:

Clean, safe and efficient methods, systems, and processes for utilizing thermolysis methods to processes to convert various carpet, rug, polymeric materials and other waste sources, such as solid waste, tires, manure, auto shredder residue, glass and carbon fiber composite materials, municipal solid wastes, medical wastes, waste wood and the like into a Clean Fuel Gas and Char source are disclosed. The invention processes the carpet, rug, polymeric material to effectively shred and/or grind the waste source, such as post-consumer carpet remnants and waste, and then process using thermolysis methods to destroy and/or separate halogen and other dangerous components to provide a Clean Fuel Gas and Char source. Additional waste sources, such as solid waste, tires, manure, auto shredder residue, glass and carbon fiber composite materials, municipal solid wastes, medical wastes, waste wood and the like, are suitable for the processing of the invention disclosed. 121-. (canceled)22: A method for converting a composite waste source to a Clean Fuel Gas source and Char source comprising:inputting a waste source into a thermolysis system; wherein the thermolysis system comprises at least two reactors, at least two gas scrubbers, an oil/water separator, and an oil/tar cracker;destroying and/or removing toxic compounds present in the waste source; andgenerating the Clean Fuel Gas and Char source,wherein the reactors have a process temperature of about 300° C.-800° C. and generate tars and oils;wherein all of the oils and tars are separated from the Clean Fuel Gas source in the at least two gas scrubbers, thereafter cracked in the oil/tar cracker, and sent back to the secondary reactor to generate more of the Clean Fuel Gas source;wherein the Clean Fuel Gas source and Char source are substantially-free of halogenated organic compounds and do not contain oils and/or tars.23: The method of claim 22 , wherein the composite waste source comprises glass composite claim 22 , carbon ...

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15-03-2018 дата публикации

Liquid Inlet Device

Номер: US20180073965A1
Принадлежит: Horizon Technology Inc

Described is a liquid inlet valve having a housing configured to receive the opening of a sample bottle, a valve, a nozzle positioned within the housing, and a tube that extends downwardly from the housing. The liquid inlet valve is useful for transferring liquid samples from a sample bottle to a solvent phase extraction (SPE) disk of a bottle extractor system for purposes of conducting environmental analysis.

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14-03-2019 дата публикации

VACUUM CLEANER

Номер: US20190075989A1
Принадлежит:

A vacuum cleaner includes an odor neutralizer and dust plume abatement system. The odor neutralizer and dust plume abatement system delivers a mist to a working air path of the vacuum cleaner, such as at or upstream of a working air treatment assembly defining a portion of the working air path. 1. A vacuum cleaner comprising:a housing;a working air path through the housing comprising a dirty air inlet and a clean air outlet;a working air treatment assembly defining a portion of the working air path;a suction source defining a portion of the working air path and in fluid communication with the working air treatment assembly; and a mist generator;', 'a mist chamber configured to receive mist generated by the mist generator, wherein the mist chamber is in fluid communication with the working air path at or upstream of the working air treatment assembly; and', 'a valve between the mist chamber and the working air path and configured to control the flow of mist from the mist chamber into the working air path at or upstream of the working air treatment assembly., 'an odor neutralizer and dust plume abatement system configured to dispense a mist into the working air path, the system comprising2. The vacuum cleaner of claim 1 , wherein the odor neutralizer and dust plume abatement system further comprises a liquid reservoir in fluid communication with the mist generator and adapted to hold a liquid solution.3. The vacuum cleaner of claim 2 , and further comprising a wick provided in the liquid reservoir and in register with the mist generator.4. The vacuum cleaner of claim 3 , wherein the wick comprises an absorbent material for transferring a liquid solution from the liquid reservoir to the mist generator by capillary action.5. The vacuum cleaner of claim 2 , wherein the liquid reservoir is located above the mist generator and mist chamber.6. The vacuum cleaner of claim 5 , wherein the mist chamber is in fluid communication with the working air path upstream of the working ...

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12-06-2014 дата публикации

Environmentally-friendly Exhaust Device

Номер: US20140157991A1
Принадлежит:

An environmentally-friendly exhaust device comprises an outer tank. An inner pipe is disposed inside the outer tank. An air propeller is disposed below the inner pipe inside the outer tank. An upper guiding plate and a lower guiding plate are disposed on a surface of the inner pipe for connecting with the outer tank. Thereby, air, oil mist and water are entered between the outer tank and the inner pipe; and are guided to the air propeller below through the upper and the lower guiding plates; and then are exhausted through the inner pipe upwardly. The purification of oil mist is processed integrally for enhancing the efficiency of exhaust and achieving the environmentally-friendly effects. Multiple layers of filter screens provided for carrying out multiple filtering are economically effective and can further enhance the environmentally-friendly effects. 2. The environmentally-friendly exhaust device as claimed in claim 1 , wherein the fixing block is in a reducing staircase shape from bottom to top.3. The environmentally-friendly exhaust device as claimed in claim 1 , wherein the plurality of the supporting legs comprises three and the plurality of the supporting legs being disposed evenly on the bottom circumference of the outer tank.4. The environmentally-friendly exhaust device as claimed in claim 1 , wherein the bottom the outer tank is formed in an arc shape with a convex side facing downwardly claim 1 , said bottom having a plurality of concave positioning portions is disposed thereon claim 1 , a plurality of convex fixing portions is disposed on the bottom of the fixing block for positioning the concave positioning portions.5. The environmentally-friendly exhaust device as claimed in claim 1 , wherein: the rotational rods comprise six rotational rods.6. The environmentally-friendly exhaust device as claimed in claim 1 , wherein a screwing element is disposed on the bottom end of the axial rod.7. The environmentally-friendly exhaust device as claimed in claim ...

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24-03-2016 дата публикации

Hydro-filtration Unit with Sanding Heads

Номер: US20160082381A1
Автор: Oksanen Daniel
Принадлежит:

A motor, a reservoir, a recovery basket, an internal hose, an external hose, a power switch, baffle with injection nozzles and floats, a sanding head, an extended sanding head, and a corner sanding head comprises a hydro-filtration unit with a sanding heads for drywall work. The sanding heads may be used to sand drywall and simultaneously draw the dust out of the air as it is created through the sanding process. The hydro-filtration prevents dust from being released into the air. Within the reservoir, the internal hose connects at one end to the motor and at the other to the floating dust injector unit and the injection nozzles. The external hose connects the sanding heads to the motor. 1. A hydro-filtration unit , comprising:(a) a motor;(b) said motor powering a vacuum pump;(c) a reservoir;(d) said reservoir being partially filled with water;(e) a recovery basket;(f) said recovery basket being of a size and shape to fit inside said reservoir;(g) a floating particle injector unit having a baffle, an interior hose attachment, a plurality of injection nozzles, and floats;(h) an internal hose;(i) said internal hose being configured to connect on one end to said vacuum pump and to connect on an opposite end to said interior hose attachment;(j) said floating particle injector being configured to float on top of said water;(k) said sanding pad being configured to attach to said sanding surface;(l) an external hose;(m) said external hose being configured to connect on one end to said vacuum pump;wherein said hydro-filtration unit is configured such that said vacuum pump draws particles and air through said external hose and propels particles and air through said internal hose and out said floating particle injector and into said water where particles accumulate in said recovery basket.2. The hydro-filtration unit of claim 1 , further comprising:(a) a sanding head having an attachment point, a hollow handle, a sanding surface, a side intake, and a surface opening;(b) said ...

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21-03-2019 дата публикации

MANUFACTURING APPARATUS AND EXHAUST GAS TREATMENT APPARATUS

Номер: US20190083918A1
Автор: Nakata Rempei
Принадлежит:

A manufacturing apparatus according to an embodiment is a manufacturing apparatus of a semiconductor device or a liquid crystal device including a process chamber discharging exhaust gas, a waste liquid discharger discharging waste liquid including a part of the exhaust gas, a first pipe provided between the process chamber and the waste liquid discharger, having a first opening area in a cross section in a direction perpendicular to a moving direction of the exhaust gas, a second pipe provided between the first pipe and the waste liquid discharger, having a second opening area smaller than the first opening area in a cross section in the direction perpendicular to the moving direction of the exhaust gas, and a third pipe connected to the first pipe, the third pipe supplying a condensing agent having a normal boiling point of equal to or higher than 25° C. to the first pipe. 1. A manufacturing apparatus of a semiconductor device or a liquid crystal device , comprising:a process chamber discharging exhaust gas;a waste liquid discharger discharging waste liquid including a part of the exhaust gas;a first pipe provided between the process chamber and the waste liquid discharger, the first pipe having a first opening area in a cross section in a direction perpendicular to a moving direction of the exhaust gas;a second pipe provided between the first pipe and the waste liquid discharger, the second pipe having a second opening area smaller than the first opening area in a cross section in the direction perpendicular to the moving direction of the exhaust gas; anda third pipe connected to the first pipe, the third pipe supplying a condensing agent having a normal boiling point of equal to or higher than 25° C. to the first pipe.2. The manufacturing apparatus according to claim 1 , further comprising:a temperature adjuster adjusting a temperature in the first pipe.3. The manufacturing apparatus according to claim 1 , further comprising:a heater heating the condensing agent ...

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21-03-2019 дата публикации

AIR PURIFIER

Номер: US20190083990A1
Автор: Zhang Jingyu
Принадлежит:

An air purifier is provided, including a box body and a filter screen inside the box body, an air suction device, a water mist generator, the water mist generator being disposed at one side of the filter screen, the air suction device being configured to inhale outdoor air into an interior of the box body, and the water mist generator being configured to form an ionized water layer. 1. An air purifier , comprising:a box body,a filter screen, disposed inside the box body, andan air suction device, a water mist generator, the water mist generator all disposed at one side of the filter screen, the air suction device being configured to inhale outdoor air into an interior of the box body, and the water mist generator being configured to form an ionized water layer.2. The air purifier according to claim 1 , wherein the box body comprises a first panel and a second panel assembled with each other claim 1 , and the air suction device is disposed at the second panel.3. The air purifier according to claim 2 , wherein the water mist generator is disposed between the filter screen and the air suction device.4. The air purifier according to claim 3 , wherein the filter screen claim 3 , water mist generator and air suction device are in stacked arrangement in the box body in sequence in a direction from the first panel to the second panel.5. The air purifier according to claim 1 , wherein the water mist generator comprises a water channel claim 1 , one or more spraying devices and an ionization generator claim 1 , the one or more spraying devices are disposed on the water channel claim 1 , the ionization generator is configured to ionize water mist sprayed by the spraying device claim 1 , to form the ionized water layer.6. The air purifier according to claim 5 , wherein a plane where the water channel is disposed is parallel to a plane where the filter screen is disposed.7. The air purifier according to claim 3 , wherein each of the spraying devices is disposed on an inner side ...

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