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Cu(II) Extraction in Ionic Liquids and Chlorinated Solvents: Temperature Effect

机译:离子液体和氯化溶剂中的铜(II)萃取:温度效应

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Room temperature ionic liquids have been currently used in liquid/liquid extraction processes in order to substitute conventional organic solvents. In this paper, a series of chlorinated solvents and 1-alkyl-3-me- thylimidazolium-based ionic liquids were selected to study the extraction efficiency of a lipophilic polya- mine 1,1,7,7-tetraethyl-4-tetradecyldiethylenetriamine (TE14DT) towards the model ion Cu(II) in such dif-ferent media. The effect of temperature on the extraction efficiency was also investigated. The metal ion par-tition was found to be strongly dependent on both the nature of the solvent and on the working temperature. The viscosity of ionic liquids and the water content in ionic liquid were found to affect the extraction effi-ciency of TE14DT. The chemical nature of the cation of ionic liquids, and in particular the alkyl chain length on imidazolium ring, also seemed to be important in determining the efficiency of the extraction process. Finally, preliminary experiments on back-extraction of Cu(II) ions from ionic liquid also revealed interesting hints to the development of a continuous transport process.
机译:室温离子液体目前已用于液/液萃取过程中,以替代常规有机溶剂。本文选择了一系列氯化溶剂和基于1-烷基-3-甲基-噻唑鎓的离子液体来研究亲脂性聚酰胺1,1,7,7-四乙基-4-十四烷基二亚乙基三胺(在这种不同的介质中朝向模型离子Cu(II)迁移。还研究了温度对提取效率的影响。发现金属离子的分配强烈取决于溶剂的性质和工作温度。发现离子液体的粘度和离子液体中的水含量会影响TE14DT的萃取效率。离子液体阳离子的化学性质,尤其是咪唑鎓环上的烷基链长,似乎对确定萃取过程的效率也很重要。最后,有关从离子液体中反萃取Cu(II)离子的初步实验也揭示了开发连续运输过程的有趣提示。

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