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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Traceability in analytical atomic spectrometry: elemental analysis comes full circle
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Traceability in analytical atomic spectrometry: elemental analysis comes full circle

机译:分析原子光谱中的可追溯性:元素分析来自满圈

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摘要

For thousands of years the need for measurements which are comparable at different locations and at different moments in time has been met using the concept of traceability. The way in which this concept functions, and its limitations, are described together with the international effort since the 19th century to underpin traceable physical measurement values with a global infrastructure. It is shown how the physical measurement infrastructure also served to underpin traceable elemental analysis results whilst they were obtained by classical analysis methods. The almost universal replacement of these methods by atomic spectrometry introduced a need for chemical calibration standards and matrix reference materials with traceable values. However, no comparable chemical measurement infrastructure existed and for a time the benefits of traceable results in elemental analysis were largely forgotten. The extension of the international measurement infrastructure to chemical measurements is described, emphasising the formation of the Consultative Committee for Metrology in Chemistry (CCQM) and the activities of its Inorganic Analysis Working Group (IAWG). As a result, any laboratory using atomic spectrometry in accordance with current best practice should be able to provide traceable measurement results. Traceability of elemental analysis results has indeed come full circle, although atomic spectrometry facilitates more than elemental analysis and work remains to be done with some other applications.
机译:几千年来,使用可追溯性的概念,已经满足了在不同位置和不同时刻相当的测量的需求。这种概念功能及其限制的方式将与自19世纪以来的国际努力一起描述与全球基础架构的可追踪物理测量值支持。示出了物理测量基础设施的方式也用于通过经典分析方法获得可追踪的元素分析结果。通过原子光谱测定的几乎通用替代这些方法引入了具有可追踪值的化学校准标准和矩阵参考材料。然而,没有相当的化学测量基础设施存在,并且有一段时间在基本上被遗忘了元素分析中可追踪结果的效益。描述了国际测量基础设施对化学测量的延伸,强调了化学(CCQM)中计量咨询委员会的形成以及其无机分析工作组(IAWG)的活动。结果,使用根据当前最佳做法的原子光谱法的任何实验室都应该能够提供可追踪的测量结果。元素分析结果的可追溯性确实是全圈,尽管原子光谱促进了超过元素的分析,但工作仍有一些其他应用程序。

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