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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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Применить Всего найдено 3. Отображено 3.
29-10-2015 дата публикации

MONAZITE BALLAST SEPARATION AND RECOVERY METHOD

Номер: US20150307958A1
Принадлежит:

The invention relates to a separation and recovery method for radioactive waste slag and specifically relates to a separation and recovery method for monazite slag. The separation and recovery method comprises the following steps: acid leaching, pressure filtration, water washing, extraction of valuable components and treatment of filtration slag. The separation and recovery method provided by the invention performs low-acid and low-temperature leaching on monazite slag, so that a liquid phase and a solid phase are easy to separate; after an ore dressing process is adopted for performing ore dressing and alkali decomposition on secondary slag, closed-loop circulation and recovery of uranium, thorium and rare earth is realized; and simultaneously, extraction raffinate waste acid is recycled, so that the emission of waste water is reduced, the consumption of sulfuric acid and fresh water and the treatment cost of the waste water are reduced, the production cost is reduced, the recovery rate of the valuable elements, namely the uranium, the thorium and the rare earth is more than 97%, and the whole process has no emission of the radioactive waste water and waste slag. 1. A method for recovering substances from monazite slag , comprising the following steps:(i) adding monazite slag into a 0.25 to 0.5 molar solution of inorganic strong acid according to a monazite slag/acid ratio of 1 kg slag/l to 15 L acid solution to form a mixture, heating the mixture to 40° C.-100° C., stiffing for 5 h-8 h, cooling, standing to obtain a first supernatant liquid containing uranium, thorium and rare earth elements and a slurry, and recovering the first supernatant liquid;(ii) filtering the slurry to obtain filtration slag and filtrate, and combining the filtrate with the first supernatant liquid obtained in step (i) to obtain a second supernatant;(iii) washing the filtration slag with water, stopping washing when the pH value of a water washing solution is 2-3, and dry-pressing the ...

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26-05-2016 дата публикации

Monazite ballast separation and recovery method

Номер: AU2013351773B2
Принадлежит: YIYANG HONGYUAN RARE EARTH CO Ltd

A monazite ballast separation and recovery method comprises the following steps: acid leaching, filter pressing, washing, extracting valuable components, and residue processing. In the acid leaching step, the ballast is leached at low temperature and in low acid, so that the liquid is easily separated from the solid; in the extraction step, resin is used to extract uranium, P204 is used to extract thorium, and N1923 is used to extract RE; through this combined process, the residual liquid and the waste acid are extracted to achieve cyclic utilization.

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23-05-2017 дата публикации

Monazite ballast separation and recovery method

Номер: US09657369B2
Принадлежит: YIYANG HONGYUAN RARE EARTH CO Ltd

The invention relates to a separation and recovery method for radioactive waste slag and specifically relates to a separation and recovery method for monazite slag. The separation and recovery method comprises the following steps: acid leaching, pressure filtration, water washing, extraction of valuable components and treatment of filtration slag. The separation and recovery method provided by the invention performs low-acid and low-temperature leaching on monazite slag, so that a liquid phase and a solid phase are easy to separate; after an ore dressing process is adopted for performing ore dressing and alkali decomposition on secondary slag, closed-loop circulation and recovery of uranium, thorium and rare earth is realized; and simultaneously, extraction raffinate waste acid is recycled, so that the emission of waste water is reduced, the consumption of sulfuric acid and fresh water and the treatment cost of the waste water are reduced, the production cost is reduced, the recovery rate of the valuable elements, namely the uranium, the thorium and the rare earth is more than 97%, and the whole process has no emission of the radioactive waste water and waste slag.

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