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Split-anion solvent extraction of light rare earths from concentrated chloride aqueous solutions to nitrate organic ionic liquids

机译:从浓氯含水溶液中的浓氯含水溶液对硝态有机离子液体的分裂阴离子溶剂萃取

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摘要

Despite its benefits, the extraction of rare earths (REEs) from chloride solutions with neutral or basic extractants is not efficient, so that separation is currently carried out by using acidic extractants. This work aims to improve this process by replacing the conventional molecular diluents in the organic phase by ionic liquids (ILs) which contain coordinating anions. The extraction of La(m), Ce(iii) and Pr(iii) from concentrated chloride solutions was tested with a quaternary ammonium and a phosphonium nitrate IL extractant. Dissolution of a trialkylphosphine oxide neutral extractant (Cyanex 923) in the nitrate ILs changed the preference of the organic phase from lighter to heavier REE and increased the overall extraction efficiency and the loading capacity of the organic phase. An increase of the CaCl2 concentration in the feed solution resulted in higher extraction efficiencies, due to a lower activity of water and hence to a poorer hydration of the REE ions. In that respect, chloride ions were not coordinating to the REE ion after extraction from concentrated chloride solutions. To achieve selectivity, one should fine-tune the loading by varying the CaCl2 and/or Cyanex 923 concentrations. Adjustment of the CaCl2 concentration in the feed and stripping solutions is essential for the separation of mixtures of REE. However, and unlike in the case of acidic extractants, no control of equilibrium pH is required. The split-anion extraction offers the possibility to separate mixtures of REEs in different groups without having to change the chloride feed solution. It leads to safer and environmentally friendlier extraction processes by (1) using solvents that are not volatile, not flammable and do no accumulate static electricity, (2) consuming no acids or alkali, (3) easy stripping with water and (4) avoidance to create nitrate-containing effluents.
机译:尽管有其益处,但含有中性或碱性萃取剂的氯化物溶液的稀土(REES)的提取是不效率的,因此目前通过使用酸性萃取剂进行分离。该作品旨在通过含有含有配位阴离子的离子液体(IL)在有机相中取代常规分子稀释剂来改善该过程。用季铵和硝酸鏻IL萃取剂来测试来自浓氯化物溶液的La(m),Ce(III)和Pr(III)的提取。硝酸ILS中三烷基氧化膦氧化物中性萃取剂(Cyanex 923)的溶解改变了有机相的偏好从较轻的ree,并增加了总提取效率和有机相的负载能力。由于水的活性较低,因此饲料溶液中的CaCl 2浓度的增加导致效率更高,因此对REE离子的较差的水合。在那方面,氯离子在从浓缩氯化物溶液中萃取后不与REE离子配偶。为了实现选择性,应该通过改变CaCl2和/或Cyanex 923浓度来微调装载。饲料和汽提溶液中CaCl2浓度的调节对于REE的混合物的分离是必不可少的。然而,并且与酸性萃取剂的情况不同,不需要对平衡pH的控制。分裂阴离子提取提供了在不同组中分离REES混合物而不意味着氯化物饲料溶液。它通过(1)使用不挥发性的溶剂,不易燃,而不是易燃,并且不会积累静电,(2)消耗酸或碱,(3)易于剥离水和(4)避免(4)避免制造含硝酸盐的流出物。

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  • 来源
    《RSC Advances》 |2018年第60期|共10页
  • 作者单位

    Univ Leuven KU Leuven Dept Chem Celestijnenlaan 200F POB 2404 B-3001 Heverlee Belgium;

    Univ Leuven KU Leuven Dept Chem Celestijnenlaan 200F POB 2404 B-3001 Heverlee Belgium;

    ESRF European Synchrotron Dutch Belgian Beamline DUBBLE CS 40220 F-38043 Grenoble 9 France;

    Univ Leuven KU Leuven Dept Chem Celestijnenlaan 200F POB 2404 B-3001 Heverlee Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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