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Recovery of Rare Earth Elements, Uranium, and Thorium from Monazite Concentrate by Supercritical Fluid Extraction

机译:通过超临界流体萃取从独居石精矿中回收稀土元素,铀和Thor

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Quantitative recovery of rare earth elements (REEs), Th, and U by supercritical fluid extraction (SCFE) with carbon dioxide containing adducts of TBP and HDEHP with HNO_3 directly from monazite concentrate (MC) powder is impossible and requires the conversion of the constituent elements into more soluble compounds. Microwave (MW) radiation can be efficiently used for MC pretreatment by sintering with Na_2CO_3 in the presence of coal. The resulting product consists of two phases. One of them contains REEs (~50%) recoverable by supercritical carbon dioxide (SC-CO_2) containing adducts of TBP or HDEHP with HNO_3. The second phase is a solid solution of CeO_2 with Th and U oxides and remaining amount of REEs. It is resistant to SCFE. Conditions were determined for quantitative dissolution of this phase in a mixture of 4 M HCl with 0.05 M HF. The use of HDEHP under the SCFE conditions allows quantitative recovery of Th and U from the hydrochloric acid solution. In the process, REEs remain in the aqueous phase and are thus separated from Th and U. A possible flowsheet was suggested for the recovery REEs from MC using SCFE with their simultaneous separation from Th and U.
机译:通过超临界流体萃取(SCFE)和二氧化碳直接从独居石精矿(MC)粉末中含有TBP和HDEHP与HNO_3的加合物,定量回收稀土元素(REEs),Th和U是不可能的,并且需要转换组成元素变成更易溶的化合物。通过在煤存在下用Na_2CO_3进行烧结,微波(MW)辐射可以有效地用于MC预处理。所得产品包括两个阶段。其中一种含有可通过超临界二氧化碳(SC-CO_2)回收的REE(〜50%),其中含有TBP或HDEHP与HNO_3的加合物。第二阶段是CeO_2与Th和U氧化物以及剩余REE的固溶体。它耐SCFE。确定了将该相定量溶解在4 M HCl和0.05 M HF混合物中的条件。在SCFE条件下使用HDEHP可以从盐酸溶液中定量回收Th和U。在此过程中,REE保留在水相中,因此与Th和U分离。建议使用SCFE从MC中回收REE并同时与Th和U分离的可能流程图。

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