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使用碱性萃取剂进行溶剂萃取时的硬-软相互作用:卤化锌和卤化镉的比较

Hard-Soft Interactions in Solvent Extraction with Basic Extractants: Comparing Zinc and Cadmium Halides.

作者信息

Lommelen Rayco, Binnemans Koen

机构信息

Department of Chemistry, KU Leuven, Celestijnenlaan 200F, P.O. box 2404, Leuven B-3001, Belgium.

出版信息

ACS Omega. 2021 Oct 13;6(42):27924-27935. doi: 10.1021/acsomega.1c03790. eCollection 2021 Oct 26.

Abstract

Solvent extraction is often applied to separate and purify metals on an industrial scale. Nevertheless, solvent extraction processes are challenging to develop because of the complex chemistry involved. For basic extractants, much of the chemical behavior remains poorly understood due to the conditions far from thermodynamic ideality. To elucidate the extraction mechanism, we studied the speciation and extraction of zinc(II) and cadmium(II) from chloride, bromide, and iodide media by using a basic extractant consisting of a trioctylmethylammonium cation and, respectively, a chloride, bromide, or iodide anion. These systems were specifically selected to increase the understanding of the less-studied bromide and iodide media and to focus on the effect of hard-soft interactions on solvent extraction systems. It was observed that, in general, a metal is more efficiently extracted when its hydration in the aqueous phase is lower and its stabilization in the organic phase is higher. In the investigated systems, these conditions are obtained by forming metal complexes with a lower charge density by coordinating the right number of halide anions and by selecting a halide with a lower charge density. In the organic phase, the stability of the metal complex can be increased by forming strong metal-anion bonds and by decreasing the water content. These insights might be of interest in the development and optimization of separation schemes for metals.

摘要

溶剂萃取常用于工业规模的金属分离和提纯。然而,由于涉及复杂的化学过程,溶剂萃取工艺的开发具有挑战性。对于碱性萃取剂,由于条件远非热力学理想状态,其许多化学行为仍知之甚少。为了阐明萃取机理,我们使用由三辛基甲基铵阳离子分别与氯离子、溴离子或碘离子组成的碱性萃取剂,研究了锌(II)和镉(II)在氯化物、溴化物和碘化物介质中的形态和萃取情况。选择这些体系是为了增进对研究较少的溴化物和碘化物介质的理解,并关注硬软相互作用对溶剂萃取体系的影响。观察到,一般来说,当金属在水相中的水合作用较低且在有机相中的稳定性较高时,其萃取效率更高。在所研究的体系中,通过与适量的卤离子配位形成电荷密度较低的金属络合物,并选择电荷密度较低的卤化物,可以实现这些条件。在有机相中,通过形成强的金属 - 阴离子键和降低水含量,可以提高金属络合物的稳定性。这些见解可能对金属分离方案的开发和优化具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eee/8554786/7a3e92c8c71d/ao1c03790_0002.jpg

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