首页> 外文OA文献 >Développement d'une méthode de séparation chromatographique couplée aux spectrométries de masse à source d'ionisation électrospray (ESI-MS) et à source plasma à couplage inductif (ICP-MS) : application à l'analyse de spéciation des lanthanides
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Développement d'une méthode de séparation chromatographique couplée aux spectrométries de masse à source d'ionisation électrospray (ESI-MS) et à source plasma à couplage inductif (ICP-MS) : application à l'analyse de spéciation des lanthanides

机译:与电喷雾电离源(ESI-MS)和电感耦合等离子体源(ICP-MS)质谱联用的色谱分离方法的开发:在镧系元素的形态分析中的应用

摘要

This work focuses on the development of a chromatographic separation method coupled to both ESI-MS and ICP-MS in order to achieve the comprehensive speciation analysis of lanthanides in aqueous phase representative of back-extraction phases of advanced spent nuclear fuel treatment processes. This analytical method allowed the separation, the characterization and the quantitation of lanthanides complexes holding polyaminocarboxylic ligands, such as DTPA and ETDA, used as complexing agents in these processes. A HILIC separation method of lanthanides complexes has been developed with an amide bonded stationary phase. A screening of a wide range of mobile phase compositions demonstrated that the adsorption mechanism was predominant. This screening allowed also obtaining optimized separation conditions. Faster analysis conditions with shorter amide column packed with sub 2 µm particles reduced analysis time by 2.5 and 25% solvent consumption. Isotopic and structural characterization by HILIC ESI-MS was performed as well as the development of external calibration quantitation method. Analytical performances of quantitation method were determined. Finally, the development of the HILIC coupling to ESI-MS and ICP-MS was achieved. A simultaneous quantitation method by ESI-MS and ICP-MS was performed to determine the species quantitative distribution in solution. Analytical performances of quantitation method were also determined.
机译:这项工作专注于与ESI-MS和ICP-MS结合的色谱分离方法的开发,以实现代表先进乏核燃料处理工艺反萃取相的水相中镧系元素的全面形态分析。这种分析方法可以分离,表征和定量含有聚氨基羧酸配体(如DTPA和ETDA)的镧系元素配合物,这些配合物在这些过程中用作配合剂。已经开发了具有酰胺键合固定相的镧系元素配合物的HILIC分离方法。广泛的流动相组成的筛选表明,吸附机理是主要的。该筛选还允许获得优化的分离条件。较短的酰胺柱填充了小于2 µm的颗粒,可实现更快的分析条件,从而减少了2.5和25%的溶剂消耗,缩短了分析时间。进行了HILIC ESI-MS的同位素和结构表征,以及外部校准定量方法的发展。确定了定量方法的分析性能。最后,实现了HILIC与ESI-MS和ICP-MS耦合的开发。通过ESI-MS和ICP-MS同时进行定量,以确定溶液中物质的定量分布。还确定了定量方法的分析性能。

著录项

  • 作者

    Beuvier Ludovic;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
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