利用阳离子交换膜分离锂离子和咪唑离子的实验研究

Jingyi Xue, Xiang Meng, Runci Wang, Z. Yuan, Weifang Zheng
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引用次数: 0

摘要

本研究利用阳离子交换膜在电场中分离 Li+ 和 [Bmim]+(1-丁基-3-甲基咪唑鎓)。研究了阳离子交换膜的类型、电流密度、阳离子总浓度、温度和阴离子类型对分离效率的影响。结果表明,在电场下利用阳离子交换膜的选择性实现 Li+ 和 [Bmim]+ 的高效分离是可行的。CIMS 膜(ASTOM 公司生产的一种阳离子交换膜)对 Li+ 和 [Bmim]+ 具有明显的选择性。当电流密度为 5 mA/cm2,Li+和[Bmim]+的进料浓度分别为 0.3 mol/L 和 0.2 mol/L 时,CIMS 的选择传输系数在工艺开始的 120 分钟内可达到 5.9。降低电流密度和提高阳离子总浓度可有效提高分离效率。降低进料温度可略微提高分离效率。将进料中阴离子的类型从氯化物改为醋酸盐,对分离没有任何影响。
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Experimental Study on the Separation of Lithium and Imidazolium Ions Using a Cation Exchange Membrane
The separation of Li+ and [Bmim]+(1-Butyl-3-methylimidazolium) using a cation exchange membrane in an electric field is studied in this work. The effects of the type of cation exchange membrane, current density, total cation concentration, temperature, and anion types on the separation efficiency are investigated. The results indicate that it is feasible to achieve the efficient separation of Li+ and [Bmim]+ using the selectivity of cation exchange membranes under an electric field. The CIMS membrane (a type of cation exchange membrane produced by ASTOM Corporation) shows obvious selectivity of Li+ from [Bmim]+. When the current density is 5 mA/cm2 and the feed concentrations of Li+ and [Bmim]+ are 0.3 mol/L and 0.2 mol/L, respectively, the selective transport coefficient of CIMS can reach 5.9 in the first 120 min of the process. The separation efficiency can be effectively improved by reducing the current density and increasing the total cation concentration. Decreasing the feed temperature can slightly improve the separation efficiency. Changing the type of anion in the feed from chloride to acetate has no detectable effect on the separation.
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