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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Precise selenium isotope ratios measurement using a multimode sample introduction system (MSIS) coupled with multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS)
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Precise selenium isotope ratios measurement using a multimode sample introduction system (MSIS) coupled with multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS)

机译:使用多模式进样系统(MSIS)和多收集器电感耦合等离子体质谱(MC-ICP-MS)进行精确的硒同位素比测量

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摘要

A multimode sample introduction hydride generation system (MSIS) was explored for rapid and precise measurements of Se isotope ratios. The MSIS system was modified in our laboratory in order to be coupled to the Neptune multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS) instrument. The principle aim of this study was focused on the optimization of the MSIS operating parameters for the determination of precise Se isotopic ratios measurements in environmental samples using the MC-ICP-MS as a detection system. Special attention has been paid to the performance of the MSIS system in dual mode operation "simultaneous nebulization and vapour (hydride) generation". Typical internal (within-run) precision achieved under optimal conditions was better than 33 ppm (1 RSE) for ~(78)Se/~(76)Se, ~(78)Se/~(77)Se, ~(78)Se/~(80))Se and ~(78)Se/~(82)Se ratios using repeated measurements of NIST SRM 3149 Se standard solution. On average, the short-term uncertainty was better than 200, 150, 481 and 90 ppm (1 RSD) for ~(78)Se/~(76)Se, ~(78)Se/~(77)Se, ~(78)Se/~(80)Se and ~(78)Se/~(82)Se isotope ratios, respectively.
机译:探索了一种多模式样品引入氢化物发生系统(MSIS),用于快速,精确地测量硒同位素比。在我们的实验室中对MSIS系统进行了修改,以便与Neptune多收集器电感耦合等离子体质谱(MC-ICP-MS)仪器耦合。这项研究的主要目标集中在优化MSIS操作参数上,以使用MC-ICP-MS作为检测系统确定环境样品中的精确硒同位素比测量。在双模式操作“同时雾化和产生蒸气(氢化物)”中,MSIS系统的性能得到了特别的关注。在〜(78)Se /〜(76)Se,〜(78)Se /〜(77)Se,〜(78)的情况下,在最佳条件下实现的典型内部(运行中)精度优于33 ppm(1 RSE)使用NIST SRM 3149 Se标准溶液的重复测量,获得Se /〜(80))Se和〜(78)Se /〜(82)Se的比率。平均而言,〜(78)Se /〜(76)Se,〜(78)Se /〜(77)Se,〜()的短期不确定度优于200、150、481和90 ppm(1 RSD)。 78)Se /〜(80)Se和〜(78)Se /〜(82)Se同位素比。

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