Aluminum Removal from Rare Earth Chloride Solution through Regulated Hydrolysis via Electrochemical Method

Yaoyao Zhu, Jian Li, Dongyue Xie, Hui Zhang, Man Li, Binfeng Xu, Xuxia Zhang, Yangyang Xie, Tao Qi
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Abstract

Due to the coexistence of Al3+ and RE3+ and their similar properties, the separation of aluminum from rare earths is difficult. In this study, selective precipitation was used to separate aluminum from rare earth chloride solution via electrochemical regulated hydrolysis. By controlling the current density and electrolytic time, the rate of hydroxyl ion production was regulated, and the selective separation of rare earth and aluminum was realized according to the different precipitation sequences. By altering the temperature, current density, pH value, and other parameters, the separation performance of aluminum from rare earth in mixed rare earth chloride systems was systematically investigated. The removal rate of aluminum reached 88.35%, and the loss rate of rare earth was only 5.99% under optimized conditions. Compared with traditional neutralization hydrolysis, the new process showed higher efficiency and lower rare earth loss rate. Furthermore, a kinetic analysis of aluminum precipitation revealed that the reaction adhered to pseudo-first order kinetics. Additionally, the precipitate obtained via separation and filtration was amorphous alumina hydroxide with a small amount of rare earth attached. No reagent was consumed for the new process, which was more efficient and cleaner, providing a new idea for removing aluminum impurities from rare earth solutions.
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通过电化学方法调节水解作用去除稀土氯化物溶液中的铝
由于 Al3+ 和 RE3+ 共存且性质相似,铝与稀土的分离十分困难。本研究采用选择性沉淀法,通过电化学调节水解将铝从稀土氯化物溶液中分离出来。通过控制电流密度和电解时间,调节羟基离子的生成速率,并根据不同的沉淀顺序实现稀土和铝的选择性分离。通过改变温度、电流密度、pH 值等参数,系统研究了氯化稀土混合体系中铝与稀土的分离性能。在优化条件下,铝的去除率达到 88.35%,稀土的损失率仅为 5.99%。与传统的中和水解法相比,新工艺具有更高的效率和更低的稀土流失率。此外,铝沉淀的动力学分析表明,反应遵循伪一阶动力学。此外,通过分离和过滤获得的沉淀物是无定形的氢氧化铝,并附有少量稀土。新工艺无需消耗任何试剂,更高效、更清洁,为从稀土溶液中去除铝杂质提供了新思路。
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