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首页> 外文期刊>TrAC: Trends in Analytical Chemistry >Flow injection on-line preconcentration and separation coupled with atomic (mass) spectrometry for trace element (speciation) analysis based on sorption of organo-metallic complexes in a knotted reactor
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Flow injection on-line preconcentration and separation coupled with atomic (mass) spectrometry for trace element (speciation) analysis based on sorption of organo-metallic complexes in a knotted reactor

机译:基于打结反应器中有机金属配合物吸附的流动注射在线预浓缩和分离结合原子(质谱)分析痕量元素(形态)分析

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摘要

This article presents the state of the art of flow injection (FI) on-line preconcentration and separation based on sorption of organo-metallic complexes on the wall of a knotted reactor (KR) coupled with atomic (mass) spectrometry for trace element (speciation) analysis. In the last 7 years the KR has been successfully exploited as sorption medium, and demonsrated to be an attractive alternative to the C_18 microcolumn in FI on-line preconcentration techniques. The advantages and disadvantaes of the UR sorption system, design of FI manifolds, choice of complexing agents, consideration of a washing step, choice of eluents, and analytical applications for various atomic spectrometric techniques are discussed, with emphasis on ETAAS.
机译:本文介绍了基于打结反应器(KR)壁上有机金属配合物吸附的流动注射(FI)在线预浓缩和分离技术,以及原子(质量)光谱法测定痕量元素(物种)分析。在过去的7年中,KR被成功地用作吸附介质,并且在FI在线预浓缩技术中已被去除,成为C_18微柱的有吸引力的替代品。讨论了UR吸附系统的优缺点,FI歧管的设计,络合剂的选择,洗涤步骤的考虑,洗脱液的选择以及各种原子光谱技术的分析应用,重点是ETAAS。

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