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Estimating measurement uncertainty using a cause and effect and reconciliation approach Part 2. Measurement uncertainty estimates compared with collaborative trial expectation

机译:使用因果和对帐方法估算测量不确定度第2部分。与协作试验期望相比的测量不确定度估算

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Measurement uncertainty estimates are presented for ten analytical methods, covering over 45 combinations of analyte, matrix and concentration. The uncertainty estimates were produced using a cause and effect approach published previously. Techniques include gas and liquid chromatography, elemental analysis by graphite furnace atomic absorption spectrometry, inductively coupled plasma-mass spectrometry, inductively coupled plasma-optical emission spectrometry, and titrimetry. A range of different types of data is used, including quality control data and method validation studies. The major contributions to the uncertainty for each method and a brief description of their evaluation are given. In most cases, a combination of an experimental estimate of overall precision and the uncertainty associated with overall bias, measured as recovery, across representative sample types and analyte concentrations contributes the majority of the uncertainty, although in several cases it was essential to consider additional factors. The uncertainty estimates are also, compared with collaborative trial results where available, and with reproducibility estimates obtained from the Horwitz function.
机译:提供了十种分析方法的测量不确定度估计,涵盖了45种以上的分析物,基质和浓度组合。不确定性估计是使用先前发布的因果方法得出的。技术包括气相色谱和液相色谱,通过石墨炉原子吸收光谱法进行元素分析,电感耦合等离子体质谱,电感耦合等离子体发射光谱和滴定法。使用了一系列不同类型的数据,包括质量控制数据和方法验证研究。给出了每种方法的不确定性的主要贡献,并简要介绍了它们的评估。在大多数情况下,对代表性样品类型和分析物浓度进行总体精度的实验估计值和与总体偏差相关的不确定性(以回收率衡量)的组合会构成大多数不确定性,尽管在某些情况下,必须考虑其他因素。还可以将不确定性估计值与可用的协作试验结果进行比较,并与从Horwitz函数获得的可重复性估计值进行比较。

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