The effect of isotopic composition on the uncertainty of routine metal mass concentration measurements in ambient air.

Richard J C Brown, Sharon L Goddard, Andrew S Brown, Rachel E Yardley
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Abstract

The main sources of uncertainty encountered during the analysis of the mass concentration of metals in ambient air as part of the operation of the UK Heavy Metals Monitoring Network are presented. It is observed that the uncertainty contribution from possible variation in the isotopic composition of the sample depends on the element in question, but can be significant (e.g., for Pb, Cd, and Hg). The working curve method for the ICP-MS analysis of metals in solution, with a low resolution, high throughput instrument measuring at one m/z ratio per element, relies on the relative abundance of the isotopes under consideration being the same in both the sample and the calibration solution. Calculation of the uncertainty in this analysis assumes that the isotopic composition variation within the sample and calibration solution is limited to a defined range. Therefore, in order to confirm the validity of this quantification methodology and its uncertainty budget, the isotopic composition of the calibration standards used for quantification has been determined. The results of this analysis are presented here.

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同位素组成对环境空气中常规金属质量浓度测量不确定性的影响。
本文介绍了在分析环境空气中金属质量浓度过程中遇到的不确定性的主要来源,这是英国重金属监测网络运行的一部分。据观察,样本同位素组成的可能变化造成的不确定性取决于相关元素,但也可能很大(例如铅、镉和汞)。ICP-MS 分析溶液中金属的工作曲线法采用低分辨率、高通量仪器,以每种元素一个 m/z 比值进行测量,这依赖于样品和校准溶液中考虑的同位素的相对丰度是相同的。计算这种分析的不确定性时,假定样品和校准溶液中同位素组成的变化限制在一个确定的范围内。因此,为了确认这种定量方法的有效性及其不确定性预算,对用于定量的校准标准的同位素组成进行了测定。本文介绍了这一分析的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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