首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Phase transfer membrane supported liquid-liquid-liquid microextraction combined with large volume sample injection capillary electrophoresis-ultraviolet detection for the speciation of inorganic and organic mercury
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Phase transfer membrane supported liquid-liquid-liquid microextraction combined with large volume sample injection capillary electrophoresis-ultraviolet detection for the speciation of inorganic and organic mercury

机译:相转移膜支持的液-液-液微萃取结合大体积进样毛细管电泳-紫外检测无机和有机汞的形态

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摘要

In this paper, a novel sample pretreatment technique termed phase transfer based liquid-liquid-liquid microextraction (PT-LLLME) was proposed for the simultaneous extraction of inorganic and organic mercury species. In PT-LLLME, an intermediate solvent (acetonitrile) was added into the donor phase to improve the contacting between target mercury species and complexing reagent. Meanwhile, a membrane supported (MS)-LLLME unit was designed to realize the PT-LLLME procedure. By using nylon membrane as supporting carrier, larger than 50 μL of acceptor solution could be hung up. Following PT/MS-LLLME, the acceptor solutions were directly analyzed by large volume sample stacking capillary electrophoresis/ultraviolet detection (LVSS-CE/UV). Accordingly, a new method of PT/MS-LLLME combined with LVSS-CE/UV was developed for the simultaneous speciation of inorganic and organic mercury species. Parameters affecting the extraction efficiency of PT/MS-LLLME were investigated in details. Under the optimized conditions, enrichment factors (EFs) ranging from 160- to 478-fold were obtained for the extraction of target mercury species by PT/MS-LLLME. By combining PT/MS-LLLME with LVSS-CE/UV, EFs were magnified up to 12,138-fold and the limits of detection (at a signal-to-noise ratio of 3) were at sub ppb level. The established approach of PT/MS-LLLME-LVSS-CE/UV was successfully applied to simultaneous determination of inorganic and organic mercury species in biological samples and environmental water samples.
机译:本文提出了一种基于相转移的液-液-液微萃取(PT-LLLME)的新型样品预处理技术,用于同时萃取无机和有机汞。在PT-LLLME中,将中间溶剂(乙腈)添加到供体相中,以改善目标汞与络合剂之间的接触。同时,设计了膜支撑(MS)-LLLME单元来实现PT-LLLME程序。通过使用尼龙膜作为支撑载体,可以挂起大于50μL的受体溶液。 PT / MS-LLLME之后,通过大体积样品堆积毛细管电泳/紫外线检测(LVSS-CE / UV)直接分析受体溶液。因此,开发了一种新的PT / MS-LLLME与LVSS-CE / UV结合的方法,用于同时形成无机和有机汞物种。详细研究了影响PT / MS-LLLME提取效率的参数。在最佳条件下,通过PT / MS-LLLME提取目标汞物种可获得的富集因子(EFs)为160至478倍。通过将PT / MS-LLLME与LVSS-CE / UV结合使用,EF可以放大至12138倍,并且检测限(信噪比为3)在ppb以下。 PT / MS-LLLME-LVSS-CE / UV的既定方法已成功应用于生物样品和环境水样品中无机和有机汞物种的同时测定。

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