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Dry mass determination: what role does it play in combined measurement uncertainty? A case study using IAEA 392 and IAEA 413 algae reference materials

机译:干质量测定:在综合测量不确定度中起什么作用?使用IAEA 392和IAEA 413藻类参考材料的案例研究

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摘要

Elemental mass fractions are normally reported on a dry-mass basis. In addition, producers of reference material state their property values for dry masses and relate them to a defined dry mass determination method. This paper describes how biases and uncertainties in dry mass correction factors may affect values reported as 'concentration per dry mass'. The influence of the use of different drying methods, accuracy of drying temperature, length of drying, environmental humidity, and the sample mass used for dry mass determination have been evaluated using two candidate International Atomic Energy Agency reference materials. Deviation from proposed drying methods was observed to lead to differences of up to 5% in dry mass correction factors. In addition, the heterogeneity of sample moisture as well as hygroscopic behaviour during weighing play an important role in the uncertainty estimation. Proposals are made regarding which sources of uncertainty arising from dry mass determination should be considered and included in the combined uncertainty of analytical results.
机译:元素质量分数通常按干质量报告。此外,标准物质的生产者应说明其干质量的特性值,并将其与确定的干质量确定方法联系起来。本文描述了干重校正因子的偏差和不确定性如何影响报告为“每干重浓度”的值。使用两种候选的国际原子能机构参考材料评估了使用不同干燥方法,干燥温度的准确性,干燥时间长短,环境湿度以及用于确定干燥质量的样品质量的影响。观察到与建议的干燥方法的差异导致干燥质量校正因子差异高达5%。此外,样品水分的不均匀性以及称重过程中的吸湿性在不确定性估计中也起着重要作用。提出了关于应考虑哪些由干重测定引起的不确定性来源的建议,并将其包括在分析结果的组合不确定性中。

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