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Removal of Al, Fe and Si from complex rare-earth leach solution: A three-liquid-phase partitioning approach

机译:从复杂稀土浸出溶液中去除铝,铁和硅:一种三相液相分配方法

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A new strategy was suggested to remove Fe, Al and Si impurities from rare-earth leach solution by controlling partitioning and selective enrichment of those impurities and rare earths in three-liquid-phase systems. Experimental results indicated that aqueous pH value and addition of water-soluble complexing agents or their mixtures into initial aqueous solution have significant influence on three-liquid-phase partitioning of Fe, Al, Si and rare earths. When only 1,10-phenanthroline was added, Fe and Si can be "filtered" into PEG-rich middle phase of three-liquid-phase system (Cyanex 272/PEG 2000/(NH4)2SO4-H2O) without affecting separation of heavy and light rare-earth ions in top organic and bottom salt-rich phase, respectively. Al remained in bottom phase. However, addition of EDTA and 1,10-phenanthroline promoted enrichment of Fe, Al and Si into PEG-rich middle phase, and almost all of rare earths were concentrated in salt-rich bottom phase. Those rare earths in salt-rich phase after removal of impurities can be further separated by another three-liquid-phase system of Cyanex 272/PEG 600/(NH4)2SO4-H2O. Heavy, middle and light rare earths, Yb, Eu and La, can be selectively enriched into different liquid phases. Therefore, separation of non-rare-earth impurities from rare earths, and then between light, middle and heavy rare earths can be achieved by two stages of three-liquid-phase partitioning. The present work highlights three-liquid-phase system can be a potential separation media for removal of Fe, Al, Si from complex rare-earth leach solution and group separation of different target metals into different liquid phases.
机译:提出了一种新的策略,通过控制三相液相系统中杂质和稀土元素的分配和选择性富集,从稀土浸出溶液中去除Fe,Al和Si杂质。实验结果表明,水溶液的pH值以及在初始水溶液中添加水溶性络合剂或它们的混合物对Fe,Al,Si和稀土的三相液相分配有重大影响。当仅添加1,10-菲咯啉时,可以将Fe和Si“过滤”到三相系统的富含PEG的中间相(Cyanex 272 / PEG 2000 /(NH4)2SO4-H2O)中顶部有机相和底部富盐相中的轻稀土离子和轻稀土离子。 Al保留在底部相中。然而,EDTA和1,10-菲咯啉的加入促进了Fe,Al和Si向富含PEG的中间相的富集,几乎所有稀土都集中在富含盐的底部相中。除去杂质后,处于富盐相的那些稀土可以通过Cyanex 272 / PEG 600 /(NH4)2SO4-H2O的另一种三相液相系统进一步分离。重,中和轻稀土Yb,Eu和La可以选择性地富集成不同的液相。因此,可以通过两个阶段的三相液相分配,从稀土中分离出非稀土杂质,然后在轻,中,重稀土之间进行分离。本工作着重指出了三相液相系统可以作为一种潜在的分离介质,用于从复杂的稀土浸出溶液中去除Fe,Al,Si以及将不同目标金属基团分离成不同液相。

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