首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Separation of Tb(III) and Dy(III) from Chloride Solution by Extraction and Scrubbing with Ionic Liquid Prepared with Cyanex 272 and Aliquat 336
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Separation of Tb(III) and Dy(III) from Chloride Solution by Extraction and Scrubbing with Ionic Liquid Prepared with Cyanex 272 and Aliquat 336

机译:通过用Cyanex 272和Aliquat 336用离子液体萃取和擦洗氯化物溶液的Tb(III)和Dy(III)的分离

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摘要

Terbium and dysprosium are rare earth elements which are employed in the manufacture of advanced materials. Separating Tb(III) and Dy(III) is very complicated because their chemical properties are similar. In order to develop a separation process based on solvent extraction, extraction and scrubbing experiments were conducted using weak hydrochloric solutions containing Tb(III) and Dy(III). In this work, three kinds of Cyanex 272, namely, single Cyanex 272, a mixture with Alamine 336 and an ionic liquid prepared with Aliquat 336 were employed. In the initial pH range between 1.5 and 5, the extraction behavior of both Tb(III) and Dy(III) was very similar using these extractants, resulting in low separation factor. In terms of extraction percentage and separation factor, the ionic liquid showed better performance than both single Cyanex 272 and the mixture. Scrubbing experiments were conducted using the loaded ionic liquid, employing a Dy(III) scrubbing solution. The optimum concentration of Dy(III) in the scrubbing solution was determined. A McCabe-Thiele diagram for the scrubbing of Tb(III) in the loaded ionic liquid with Dy(III) solution was constructed. In order to verify the separation of both metal ions, batch simulation cross-current scrubbing experiments were performed. After 6 cross-current scrubbing stages, the purity of Dy(III) in the loaded ionic liquid increased from 50% to 99%. By utilizing the data reported in this work, a process can be developed for the separation of Tb(III) and Dy(III) by solvent extraction.
机译:铽和镝是稀土元素,用于制造先进材料。分离Tb(III)和Dy(III)非常复杂,因为它们的化学性质是相似的。为了开发基于溶剂萃取的分离过程,使用含有Tb(III)和Dy(III)的弱盐酸溶液进行提取和洗涤实验。在这项工作中,采用三种Cyanex 272,即单氰基10172,与阿拉胺336的混合物和用Aliquat 336制备的离子液体。在1.5和5之间的初始pH范围内,使用这些萃取剂,Tb(III)和Dy(III)的提取行为非常相似,导致低分离因子。就提取率和分离因子而言,离子液体显示出比单一氰化物272和混合物的性能更好。使用负载的离子液体进行洗涤实验,采用Dy(III)洗涤溶液。测定洗涤溶液中Dy(III)的最佳浓度。构建了用Dy(III)溶液的负载离子液体中Tb(III)洗涤的McCabe-Thiele图。为了验证金属离子的分离,进行批量模拟交叉电流擦洗实验。在6次交叉电流洗涤阶段之后,负载离子液体中的Dy(III)的纯度从50%增加到99%。通过利用本作作品中报道的数据,可以通过溶剂萃取来开发用于分离Tb(III)和Dy(III)的方法。

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