Rogers R D, Bond A H, Bauer C B, Zhang J, Griffin S T
Department of Chemistry, Northern Illinois University, DeKalb, 60115, USA.
J Chromatogr B Biomed Appl. 1996 May 17;680(1-2):221-9. doi: 10.1016/0378-4347(95)00447-5.
Solvent extraction utilizing an oil-water mixture (e.g., chloroform-water) and a suitable complexant, is a proven technology for the selective removal and recovery of metal ions from aqueous solutions. Aqueous biphasic systems (ABS), formed by mixing certain inorganic salts and water-soluble polymers, or by mixing two dissimilar water-soluble polymers, have been studied for more than 40 years for the gentle, non-denaturing separation of fragile biomolecules, yet ABS have been virtually ignored as a possible extraction technology for metal ions. In this report we review our metal ion partitioning work and discuss the three major types of partitioning: (1) those rare instances that the metal ion species present in a given solution partitions to the PEG-rich phase without an extractant; (2) the use of halide salts which produce a metal anion complex that partitions to the PEG-rich phase; and (3) the use of a water-soluble extractant which distributes to the PEG-rich phase. In addition, we correlate the partitioning behavior we observed with available thermodynamic data for metal ions and their complexes.
利用油水混合物(如氯仿 - 水)和合适的络合剂进行溶剂萃取,是一种从水溶液中选择性去除和回收金属离子的成熟技术。由混合某些无机盐和水溶性聚合物,或混合两种不同的水溶性聚合物形成的双水相体系(ABS),已经被研究了40多年,用于温和、非变性地分离脆弱的生物分子,但双水相体系作为一种可能的金属离子萃取技术实际上一直被忽视。在本报告中,我们回顾了我们关于金属离子分配的工作,并讨论了三种主要的分配类型:(1)给定溶液中存在的金属离子物种在没有萃取剂的情况下分配到富含聚乙二醇(PEG)的相中的那些罕见情况;(2)使用能产生分配到富含PEG相中的金属阴离子络合物的卤化物盐;(3)使用分配到富含PEG相中的水溶性萃取剂。此外,我们将观察到的分配行为与金属离子及其络合物的现有热力学数据相关联。