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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Ultra-sensitive speciation analysis of mercury by CE-ICP-MS together with field-amplified sample stacking injection and dispersive solid-phase extraction
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Ultra-sensitive speciation analysis of mercury by CE-ICP-MS together with field-amplified sample stacking injection and dispersive solid-phase extraction

机译:通过CE-ICP-MS结合现场放大的样品堆叠进样和分散固相萃取对汞进行超灵敏的形态分析

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摘要

A simple dispersive solid-phase extraction (DSPE) used to extract and preconcentrate ultra-trace MeHg, EtHg and Hg2+ from water sample, and a sensitive method for the simultaneous analysis of MeHg, EtHg and Hg2+ by using capillary electrophoresis-inductively coupled plasma mass spectrometry (CE-ICP-MS) with field-amplified sample stacking injection (FASI) were first reported in this study. The DSPE used thiol cotton particles as adsorbent, and is simple and effective. It can be used to extract and preconcentrate ultra-trace mercury compounds in water samples within 30 min with a satisfied recovery and no mercury species alteration during the process. The FASI enhanced the sensitivity of CE-ICP-MS with 25-fold, 29-fold and 27-fold for MeHg, EtHg and Hg2+, respectively. Using FASI-CE-ICP-MS together with DSPE, we have successfully determined ultra-trace MeHg, EtHg and Hg2+ in tap water with a limits of quantification (LOQs) of 0.26-0.45 pg/ mL, an RSD (n = 3) < 6% and a recovery of 92-108%. Ultra-high sensitivity, as well as much less sample and reagent consumption and low operating cost, make our method a valuable technique to the speciation analysis of ultra-trace mercury.
机译:一种简单的分散固相萃取(DSPE)用于从水样品中萃取和预浓缩超痕量MeHg,EtHg和Hg2 +,以及一种通过毛细管电泳-电感耦合等离子体质量同时分析MeHg,EtHg和Hg2 +的灵敏方法这项研究首次报道了采用现场放大样品堆叠进样(FASI)的质谱法(CE-ICP-MS)。 DSPE使用硫醇棉颗粒作为吸附剂,简单有效。它可用于在30分钟内提取和预浓缩水中样品中的超痕量汞化合物,回收率令人满意,并且在此过程中不会改变汞种类。 FASI对CE-ICP-MS的MeHg,EtHg和Hg2 +的灵敏度分别提高了25倍,29倍和27倍。使用FASI-CE-ICP-MS和DSPE,我们已成功测定了自来水中的超痕量MeHg,EtHg和Hg2 +,其定量限(LOQs)为0.26-0.45 pg / mL,RSD(n = 3) <6%,恢复率达到92-108%。超高的灵敏度以及更少的样品和试剂消耗以及较低的运行成本,使我们的方法成为超痕量汞形态分析的有价值的技术。

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