Department of Chemical Engineering, Universitat Politècnica de Catalunya, EPSEVG, Av. Victor Balaguer s/n, 08800 Vilanova i la Geltru, Spain.
J Hazard Mater. 2010 Oct 15;182(1-3):903-11. doi: 10.1016/j.jhazmat.2010.07.004. Epub 2010 Jul 29.
This paper describes experimental work and the mathematical modeling of solvent extraction of cadmium(II) from neutral and acidic aqueous chloride media with a Cyanex 923 extractant in Exxol D-100. Solvent extraction experiments were carried out to analyze the influence of variations in the composition of the aqueous and organic phases on the efficiency of cadmium(II) extraction. In neutral and acidic chloride conditions, the extraction of cadmium(II) by the organophosphorous extractant Cyanex 923 (L) is based on the solvation mechanism of neutral H(n)CdCl((2+n)) species and the formation of H(n)CdCl((2+n))L(q) complexes in the organic phase, where n=0, 1, 2 and q=1, 2. The mathematical model of cadmium(II) extraction was derived from the mass balances and chemical equilibria involved in the separation system. The model was computed with the Matlab software. The equilibrium parameters for metal extraction, i.e. the stability constants of the aqueous Cd-Cl complexes, the formation constants of the acidic Cd-Cl species and the metal equilibrium extraction constants, were proposed. The optimized constants were appropriate, as there was good agreement when the model was fitted to the experimental data for each of the experiments.
本文描述了用溶剂萃取法从中性和酸性含氯水溶液中萃取镉(II)的实验工作和数学建模,所用萃取剂为 Cyanex 923,稀释剂为 Exxol D-100。进行溶剂萃取实验以分析水相和有机相组成变化对镉(II)萃取效率的影响。在中性和酸性氯化物条件下,有机磷萃取剂 Cyanex 923(L)萃取镉(II)基于中性 H(n)CdCl((2+n))物种的溶剂化机制和 H(n)CdCl((2+n))L(q)配合物在有机相中的形成,其中 n=0, 1, 2,q=1, 2。镉(II)萃取的数学模型是从分离系统中涉及的质量平衡和化学平衡推导出来的。该模型使用 Matlab 软件进行计算。提出了金属萃取的平衡参数,即水相中 Cd-Cl 配合物的稳定常数、酸性 Cd-Cl 物种的形成常数和金属平衡萃取常数。优化后的常数是合适的,因为当模型拟合每个实验的实验数据时,拟合结果很好。