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Separation of rare earths from transition metals by liquid–liquid extraction from a molten salt hydrate to an ionic liquid phase

机译:通过从熔融盐水合物到离子液相的液-液萃取,将稀土与过渡金属分离

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摘要

The solvent extraction of trivalent rare-earth ions and their separation from divalent transition metal ions using molten salt hydrates as the feed phase and an undiluted fluorine-free ionic liquid as the extracting phase were investigated in detail. The extractant was tricaprylmethylammonium nitrate, [A336][NO3], and the hydrated melt was calcium nitrate tetrahydrate, Ca(NO3)2·4H2O. The extraction behavior of rare-earth ions was studied for solutions of individual elements, as well as for mixtures of rare earths in the hydrated melt. The influence of different extraction parameters was investigated: the initial metal loading in the feed phase, percentage of water in the feed solution, equilibration time, and the type of hydrated melt. The extraction of rare earths from Ca(NO3)2·4H2O was compared with extraction from CaCl2·4H2O by [A336][Cl] (Aliquat 336). The nitrate system was found to be the better one. The extraction and separation of rare earths from the transition metals nickel, cobalt and zinc were also investigated. Remarkably high separation factors of rare-earth ions over transition metal ions were observed for extraction from Ca(NO3)2·4H2O by the [A336][NO3] extracting phase. Furthermore, rare-earth ions could be separated efficiently from transition metal ions, even in melts with very high concentrations of transition metal ions. Rare-earth oxides could be directly dissolved in the Ca(NO3)2·4H2O phase in the presence of small amounts of Al(NO3)3·9H2O or concentrated nitric acid. The efficiency of extraction after dissolving the rare-earth oxides in the hydrated nitrate melt was identical to extraction from solutions with rare-earth nitrates dissolved in the molten phase. The stripping of the rare-earth ions from the loaded ionic liquid phase and the reuse of the recycled ionic liquid were also investigated in detail.
机译:详细研究了三价稀土离子的溶剂萃取及其以熔融盐水合物为进料相和未稀释的无氟离子液体为萃取相从二价过渡金属离子中分离的过程。萃取剂为硝酸三辛基甲基铵[A336] [NO3],水合熔融物为四水硝酸钙Ca(NO3)2·4H2O。研究了各种元素溶液以及水合熔体中稀土混合物的稀土离子萃取行为。研究了不同萃取参数的影响:进料阶段的初始金属负载,进料溶液中水的百分比,平衡时间以及水合熔体的类型。比较了用[A336] [Cl](Aliquat 336)从Ca(NO3)2·4H2O中提取稀土与从CaCl2·4H2O中提取稀土。发现硝酸盐体系更好。还研究了从过渡金属镍,钴和锌中提取和分离稀土。通过[A336] [NO3]萃取相从Ca(NO3)2·4H2O萃取可观察到稀土离子在过渡金属离子上的分离系数非常高。此外,即使在过渡金属离子浓度很高的熔体中,稀土离子也可以有效地与过渡金属离子分离。稀土氧化物可在少量Al(NO3)3·9H2O或浓硝酸存在下直接溶解在Ca(NO3)2·4H2O相中。将稀土氧化物溶解在水合硝酸盐熔体中后的萃取效率与从稀土硝酸盐溶解在熔融相中的溶液中萃取的效率相同。还详细研究了从负载的离子液体相中提取稀土离子和回收的离子液体的再利用。

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    Rout Alok; Binnemans Koen;

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