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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Solution to data integration problems during isotope ratio measurements by magnetic sector inductively coupled plasma mass spectrometer at medium mass resolution: application to the certification of an enriched ~(53)Cr material by isotope dilution
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Solution to data integration problems during isotope ratio measurements by magnetic sector inductively coupled plasma mass spectrometer at medium mass resolution: application to the certification of an enriched ~(53)Cr material by isotope dilution

机译:中等质量分辨率的磁区电感耦合等离子体质谱仪在同位素比测量过程中解决数据集成问题的解决方案:通过同位素稀释应用于富集〜(53)Cr材料的认证

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The suitability of a single-detector magnetic sector inductively coupled plasma mass spectrometer for low uncertainty Cr isotope ratio measurements was evaluated. Operation at medium mass resolution (m / DELTAm >= 4000) was required to eliminate the interferences from polyatomic ions commonly observed on Cr isotope masses. However, the repeatability of the ratios appeared to be far worse than expected and extremely unstable. The mass calibration was found to drift by up to 0.0016 amu on peak center (i.e. approx 12.5% of the peak width) for the duration of a measurement (i.e. 675 s). Moreover, for individual peak signals (0.12-0.36 s duration depending on isotopes) the instabilities observed, particularly for low abundant isotopes, lead to multiple maxima that could potentially complicate the data integration step. However, the major problem turned out to be the instrument software, failing to integrate the data in a reproducible and predictable manner. An 'off line' method of data integration was developed to overcome these problems that led to a nearly tenfold improvement in the repeatability of natural n(~(52)Cr)(~(50)Cr) isotope ratio measurements.The stability of the repeatability over 45 min improved by a factor of 2.6, the reproducibility of the ratios improved by more than a factor of 4 and the average ratio changed by approx 0.75% (and by up to 1.5% in the worst case). Under these stabilized conditions, direct isotope dilution could be applied as a primary method of measurement for the certification of the Cr amount content in a ~(53)Cr enriched material. The isotope ratio measurements, whose repeatability varied from 0.1 to 0.7% depending on the value of the ratio, were calibrated (corrected for mass discrimination effects) using the IRMM-625 certified isotopic reference material. Combined uncertainties were estimated for all results following the ISO guide to the expression of uncertainty in measurements. A combined uncertainty (expanded, with kappa = 2) on the Cr amount content of less than 0.6% relative was achieved, where the repeatability of the isotope ratio measurements accounted for less than 1% of this value.
机译:评估了单探测器磁区电感耦合等离子体质谱仪对低不确定度Cr同位素比测量的适用性。需要以中等质量分辨率(m / DELTAm> = 4000)进行操作,以消除通常在Cr同位素质量块上观察到的多原子离子的干扰。但是,这些比率的可重复性似乎比预期的要差得多,并且极其不稳定。在整个测量过程中(即675 s),发现质量校准在峰中心漂移最大0.0016 amu(即峰宽的约12.5%)。此外,对于单个峰值信号(0.12-0.36 s的持续时间,取决于同位素),观察到的不稳定性,特别是对于低丰度同位素,会导致多个最大值,这可能会使数据集成步骤复杂化。但是,主要问题出在仪器软件上,无法以可再现和可预测的方式集成数据。为了克服这些问题,开发了一种``离线''数据集成方法,从而使自然n(〜(52)Cr)/ n(〜(50)Cr)同位素比测量的可重复性提高了近十倍。 45分钟内可重复性的比例提高了2.6倍,比例的可重复性提高了4倍以上,平均比例变化了约0.75%(最坏情况下提高了1.5%)。在这些稳定的条件下,直接同位素稀释可以用作主要方法来验证〜(53)Cr富集材料中Cr的含量。使用IRMM-625认证的同位素参比材料对同位素比率测量值进行校准(根据比率值的变化,其重复性从0.1%到0.7%不等)。根据ISO关于测量不确定度表示的指南,对所有结果的组合不确定度进行估算。相对含量小于0.6%的铬含量达到了不确定性的综合(不确定性,kappa = 2),其中同位素比测量值的可重复性占该值的小于1%。

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