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Selectively leaching the iron-removed bauxite residues with phosphoric acid for enrichment of rare earth elements

机译:用磷酸选择性地浸出铁除去铁铝土矿残留物以富集稀土元素

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摘要

Bauxite residue (BR) is a hazardous industrial waste and also becomes an important reserve of rare earth elements (REE). An elegant process for achieving separation of REEs against silica from an iron-removed BR was established in this paper through selective leaching of silica with simultaneous enrichment of REEs. It was found that the phosphoric acid performed better than other acids (HNO3, HCl) for multiple REEs enrichment. The ideal conditions for the leaching process was determined through response surface methodology (RSM) to be H3PO4 concentration of 1.2 mol/L, L/S ratio of 11 mL/g and leaching temperature of 40 degrees C. 82.3% SiO2 in iron-removed BR was leached out while the REEs (La2O3, Ce2O3, Sc2O3 and Y2O3) remained in the leached residue with recovery of more than 98%. La2O3 and Ce2O3 were proved to be in lattice replacement within the acid-resistant pervoskite and thus remained in the leached residue. Only part of Sc2O3 and Y2O3 entered into pervoskite and the remainder was trapped in the aluminosilicate minerals. The enrichment of Sc2O3 and Y2O3 in phosphoric acid leaching process was related to the low acidity of H3PO4 solution.
机译:铝土矿残留物(BR)是一种危险的工业废物,也成为稀土元素(REE)的重要储备。本文通过选择性浸出二氧化硅,同时侵蚀REES,在本文中建立了从铁除尘BR与铁替换BR分离的优雅方法。发现磷酸比其他REES富集的其他酸(HNO3,HCl)更好。通过响应表面方法(RSM)测定浸出过程的理想条件,以H3PO4浓度为1.2mol / L,L / S比为11ml / g,浸出温度为40℃的浸出温度。82.3%SiO 2在铁矿中在浸出的残留物中被浸出的乳渣(La2O3,Ce2O3,SC2O3和Y2O3)浸出,恢复超过98%。证明La2O3和Ce2O3被证明是耐酸性钙钛矿内的晶格替代物,因此保持在浸出的残留物中。只有部分SC2O3和Y2O3进入PeroSkite和剩余部分的一部分被困在硅铝酸盐矿物质中。 SC2O3和Y2O3在磷酸浸出过程中的富集与H3PO4溶液的低酸度有关。

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