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Cobalt(II)/nickel(II) separation from sulfate media by solvent extraction with an undiluted quaternary phosphonium ionic liquid

机译:用未稀释的季phospho离子液体通过溶剂萃取从硫酸盐介质中分离钴(II)/镍(II)

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摘要

Leaching of cobalt and nickel from ores, urban waste and industrial residues is in general performed by sulfuric acid rather than hydrochloric acid, because sulfuric acid is cheaper and much less corrosive than hydrochloric acid. The choice of the acidic lixiviant has a large influence on the down-stream separation of Co and Ni, since the anion in the leachate determines the choice of solvent extraction system that can be applied. Co/Ni separations from sulfate media are traditionally performed by acidic extractants. In this paper, the extraction of Co(II) from sulfate media and its separation from Ni(II) is investigated using the quaternary phosphonium ionic liquid trihexyl(tetradecyl)phosphonium chloride (Cyphos IL 101, [C101][Cl]). Several extraction parameters have been optimized: acid concentration, salt concentration, time, temperature and the initial metal concentration in the aqueous feed solution. Furthermore, the extraction mechanism was investigated. The separation factors of Co(II)/Ni(II) are very high, in the order of 105. Stripping of the extracted Co(II) ions from the loaded ionic liquid phase was achieved by mixing with water. The ionic liquid phase was afterwards regenerated by washing with a CaCl2 solution. The extraction of Co(II) and Ni(II) with [C101][Cl] was compared to the extraction with the thiocyanate form of Cyphos IL 101, [C101][SCN]. It was found that extraction of Co(II) with [C101][SCN] occurred according to a split-anion mechanism, whereas a regular anion-exchange mechanism was observed for [C101][Cl].
机译:从矿石,城市废物和工业残渣中浸出钴和镍通常是用硫酸而不是盐酸进行的,因为硫酸比盐酸便宜且腐蚀性远低于盐酸。酸性浸滤剂的选择对Co和Ni的下游分离有很大影响,因为浸出液中的阴离子决定了可以应用的溶剂萃取系统的选择。传统上,硫酸盐介质中的Co / Ni分离是通过酸性萃取剂进行的。在本文中,使用季phospho离子液体氯化三己基(十四烷基)phosph(Cyphos IL 101,[C101] [Cl])研究了从硫酸盐介质中萃取Co(II)并将其与Ni(II)分离的方法。优化了几个提取参数:进料水溶液中的酸浓度,盐浓度,时间,温度和初始金属浓度。此外,研究了提取机理。 Co(II)/ Ni(II)的分离系数非常高,约为105。通过与水混合,从负载的离子液相中萃取出的Co(II)离子汽提。然后通过用CaCl 2溶液洗涤来再生离子液体相。比较了用[C101] [Cl]萃取Co(II)和Ni(II)与用硫氰酸盐形式的Cyphos IL 101 [C101] [SCN]萃取。结果发现,[C101] [SCN]的Co(II)萃取是根据分裂阴离子机理进行的,而[C101] [Cl]则观察到规则的阴离子交换机理。

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