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首页> 外文期刊>Analytical chemistry >Observations of Large Mass-Independent Fractionation Occurring in MC-ICPMS: Implications for Determination of Accurate Isotope Amount Ratios
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Observations of Large Mass-Independent Fractionation Occurring in MC-ICPMS: Implications for Determination of Accurate Isotope Amount Ratios

机译:MC-ICPMS中发生的大质量无关馏分的观察:对确定正确的同位素量比的意义

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摘要

Multicollector inductively coupled plasma mass spectrometry (MC-ICPMS) suffers large bias in isotope amount ratio determinations which has to be properly accounted for. The choice of the proper discrimination model is crucial. Over the last few decades, the exponential mass-bias correction model (Russell's law) has become a standard curriculum in isotope amount ratio measurements. In nature, however, isotopic fractionation that deviates significantly from the exponential model has been known for a long time. Recently, such fractionation was also observed in MC-ICPMS. This phenomenon is termed mass-independent fractionation. In this study, significant departure from the mass-dependent fractionation model is reported for germanium and lead with the most dramatic occurring for germanium-73 and lead-204 isotopes wherein, on average, close to a half percent bias was evidenced from the Russell's law.
机译:多收集器电感耦合等离子体质谱法(MC-ICPMS)在同位素量比确定中存在较大偏差,必须适当考虑这一点。选择适当的歧视模型至关重要。在过去的几十年中,指数质量偏倚校正模型(罗素定律)已成为同位素量比测量的标准课程。但是,从本质上讲,很长时间以来就已经发现同位素分馏显着偏离指数模型的情况。最近,在MC-ICPMS中也观察到了这种分离。这种现象称为非质量分数分离。在这项研究中,据报道,锗和铅明显偏离了质量依赖的分馏模型,其中最显着的是锗73和铅204同位素,根据拉塞尔定律,平均而言,偏差接近半个百分点。 。

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