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超临界流体萃取金属螯合物:综述。

Supercritical Fluid Extraction of Metal Chelate: A Review.

机构信息

a School of Chemical Engineering and Technology , Xi'an Jiaotong University , Xi'an , P. R. China.

出版信息

Crit Rev Anal Chem. 2017 Mar 4;47(2):99-118. doi: 10.1080/10408347.2016.1225254. Epub 2016 Aug 22.

Abstract

Supercritical fluid extraction (SFE), as a new green extraction technology, has been used in extracting various metal species. The solubilities of chelating agents and corresponding metal chelates are the key factors which influence the efficiency of SFE. Other main properties of them such as stability and selectivity are also reviewed. The extraction mechanisms of mainly used chelating agents are explained by typical examples in this paper. This is the important aspect of SFE of metal ions. Moreover, the extraction efficiencies of metal species also depend on other factors such as temperature, pressure, extraction time and matrix effect. The two main complexation methods namely in-situ and on-line chelating SFE are described in detail. As an efficient chelating agent, tributyl phosphate-nitric acid (TBP-HNO) complex attracts much attention. The SFE of metal ions, lanthanides and actinides as well as organometallic compounds are also summarized. With the proper selection of ligands, high efficient extraction of metal species can be obtained. As an efficient sample analysis method, supercritical fluid chromatography (SFC) is introduced in this paper. Recently, the extraction method combining ionic liquids (ILs) with supercritical fluid has been becoming a novel technology for treating metal ions. The kinetics related to SFE of metal species is discussed with some specific examples.

摘要

超临界流体萃取(SFE)作为一种新的绿色萃取技术,已被用于提取各种金属物种。螯合剂及其相应金属配合物的溶解度是影响 SFE 效率的关键因素。其他主要性质,如稳定性和选择性也进行了综述。本文通过典型实例解释了主要使用的螯合剂的萃取机制。这是金属离子 SFE 的重要方面。此外,金属物种的萃取效率还取决于其他因素,如温度、压力、萃取时间和基质效应。本文详细描述了两种主要的配位体复合方法,即原位和在线螯合 SFE。三丁基膦-硝酸(TBP-HNO)复合物作为一种有效的螯合剂,引起了广泛关注。本文还总结了金属离子、镧系元素和锕系元素以及有机金属化合物的 SFE。通过选择合适的配体,可以获得高效的金属物种萃取。作为一种有效的样品分析方法,超临界流体色谱(SFC)在本文中也进行了介绍。最近,将离子液体(ILs)与超临界流体相结合的萃取方法已成为处理金属离子的一种新技术。本文通过一些具体实例讨论了与 SFE 相关的动力学。

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