Hard-Soft Interactions in Solvent Extraction with Basic Extractants: Comparing Zinc and Cadmium Halides.
Rayco Lommelen,Koen Binnemans +1 more
- 13 Oct 2021
- Vol. 6, Iss: 42, pp 27924-27935
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TL;DR: In this paper, the authors studied the speciation and extraction of zinc and cadmium from chloride, bromide, and iodide media by using a basic extractant consisting of a trioctylmethylammonium cation and, respectively, a chloride or iodide anion.
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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.
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Citations
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References
Hard and soft acids and bases
TL;DR: In this paper, the rate data for the generalized nucleophilic displacement reaction were reviewed, and the authors presented a method to estimate the rate of the generalized displacement reaction in terms of the number of nucleophiles.
9.5K
•Book
Extractive Metallurgy of Rare Earths
C. K. Gupta,N. Krishnamurthy +1 more
- 02 Dec 2015
TL;DR: A comprehensive review of the extractive metallurgy of rare earths can be found in this article, where the topics covered are: world rare earth resources and production; ore processing and separation of individual rare earth elements; reduction, refining, and ultrapurification of rare Earth elements; methods for rare earth materials analysis; and a selection of the numerous rare earth applications.
1.2K
Solvent extraction: the coordination chemistry behind extractive metallurgy
A. Matthew Wilson,Phillip J. Bailey,Peter A. Tasker,Jennifer R. Turkington,Richard A. Grant,Jason B. Love +5 more
TL;DR: Well-established principles of coordination chemistry provide an explanation for the remarkable strengths and selectivities shown by most of these solvent extractants used in extractive hydrometallurgy.
Raman Study of Zinc Chloride Solutions
TL;DR: Raman studies of aqueous solutions of zinc chloride indicate the presence of Zn(H2O)6++, ZnCl(aq)+, linear ZnC2(aq), and ZnCL4(H 2O)2= in aqueously solutions less concentrated than ten molar.
179