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Determination of iron by Z-GFAAS and the influence of short-term precision and long-term precision

机译:Z-GFaas测定铁及短期精密度和长期精密度的影响

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摘要

A detailed method validation of graphite-furnace atomic absorption spectrometry (GFAAS) with Zeeman background correction was performed. The aim is to perform a detailed investigation of short-term precision as opposed to long-term precision. It was suggested that release of graphite flakes into the light path during measurement significantly influenced the performance of the method. It was found that significant deviations with respect to the certified values were frequent and an estimate of reliable uncertainties was obtained only after a high number of repetitions. Uncertainty of intralaboratory testing was evaluated as a method to estimate uncertainties that are comparable to uncertainties that were obtained by intralaboratory testing and to uncertainties predicted by the Horwitz curve. To a large extent, the uncertainty in measurement that was predicted by pooled calibrations corresponded to the uncertainties that were obtained from multiple determinations of unknowns. It was thus proposed that a large proportion of the difference in uncertainty in measurement between laboratories could be explained by properties of the different detectors. In order to support accuracy, it is suggested that a higher level of uncertainty should be accepted in analytical investigations.
机译:使用Zeeman背景校正对石墨炉原子吸收光谱法(GFAAS)进行了详细的方法验证。目的是对短期精度而不是长期精度进行详细研究。建议在测量过程中将石墨薄片释放到光路中会显着影响该方法的性能。发现相对于认证值的重大偏差是经常发生的,并且仅在重复多次之后才获得可靠不确定性的估计。评估实验室内部测试的不确定性,作为一种估计不确定性的方法,该不确定性可与通过实验室内部测试获得的不确定性和由Horwitz曲线预测的不确定性进行比较。在很大程度上,由合并校准预测的测量不确定度对应于从多次确定未知数获得的不确定度。因此提出,实验室之间测量不确定度的很大一部分差异可以用不同探测器的特性来解释。为了支持准确性,建议在分析研究中接受更高水平的不确定性。

著录项

  • 作者

    Andersen Jens;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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