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首页> 外文期刊>Bulletin of the Korean Chemical Society >Development of a Model System of Uncertainty Evaluations for Multiple Measurements by Isotope Dilution Mass Spectrometry: Determination of Folic Acid in Infant Formula
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Development of a Model System of Uncertainty Evaluations for Multiple Measurements by Isotope Dilution Mass Spectrometry: Determination of Folic Acid in Infant Formula

机译:同位素稀释质谱法多次测量不确定度评估模型系统的开发:婴儿配方食品中叶酸的测定

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A model system has been established for the evaluation of the uncertainty of the value from measurements of multiple subsamples by isotope dilution mass spectrometry (IDMS). In this report, we apply this model system for the evaluation of measurement uncertainty in determination of folic acid in infant formula. Five subsamples were analyzed by IDMS. The mean of the measurement results of the five subsamples was assigned as the final measurement value. The standard deviation (s) of the results from five subsamples was attributable to repeatability of the measurement. The uncertainty components in the IDMS measurement methods were categorized into two groups. Group I includes uncertainty components which give common systematic effects to all subsamples and do not contribute to the variation among multiple measurements (repeatability). Group II includes uncertainty components that give random effects on the measurement results, and are related with the measurement repeatability. These random effects are attributed to s. Therefore, the uncertainty of the final value was calculated by combining the standard deviation of the mean of multiple measurements, s/☆n (where n = 5), and the measurement uncertainty associated with the uncertainty components that give systematic effects.
机译:已经建立了一个模型系统,用于通过同位素稀释质谱法(IDMS)对多个子样品的测量值进行不确定性评估。在本报告中,我们将该模型系统用于评估婴儿配方奶粉中叶酸测定中的测量不确定度。通过IDMS分析了五个子样本。将五个子样本的测量结果的平均值指定为最终测量值。来自五个子样本的结果的标准偏差归因于测量的可重复性。 IDMS测量方法中的不确定因素分为两类。第一组包括不确定性成分,这些成分会给所有子样本带来共同的系统影响,并且不会导致多次测量之间的差异(可重复性)。第二组包括不确定性成分,这些不确定性成分会对测量结果产生随机影响,并且与测量的可重复性有关。这些随机效应归因于。因此,最终值的不确定度是通过将多次测量的平均值的标准偏差s /☆n(其中n = 5)与与产生系统影响的不确定度分量相关的测量不确定度相结合来计算的。

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