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首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >Establishing comparability and compatibility in the purity assessment of high purity zinc as demonstrated by the CCQM-P149 intercomparison
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Establishing comparability and compatibility in the purity assessment of high purity zinc as demonstrated by the CCQM-P149 intercomparison

机译:CCQM-P149相互作用证明了高纯度锌的纯度评估中的可比性和相容性

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摘要

For the first time, an international comparison was conducted on the determination of the purity of a high purity element. Participants were free to choose any analytical approach appropriate for their institute's applications and services. The material tested was a high purity zinc, which had earlier been assessed for homogeneity and previously used in CCQM-K72 for the determination of six defined metallic impurities. Either a direct metal assay of the Zn mass fraction was undertaken by EDTA titrimetry, or an indirect approach was used wherein all impurities, or at least the major ones, were determined and their sum subtracted from ideal purity of 100%, or 1 kg kg(-1). Impurity assessment techniques included glow discharge mass spectrometry, inductively coupled plasma mass spectrometry and carrier gas hot extraction/combustion analysis. Up to 91 elemental impurities covering metals, non-metals and semimetals/metalloids were quantified. Due to the lack of internal experience or experimental capabilities, some participants contracted external laboratories for specific analytical tasks, mainly for the analysis of non-metals. The reported purity, expressed as zinc mass fraction in the high purity zinc material, showed excellent agreement for all participants, with a relative standard deviation of 0.011%. The calculated reference value, w(Zn) = 0.999 873 kg kg(-1), was assigned an asymmetric combined uncertainty of +0.000 025 kg kg(-1) and -0.000 028 kg kg(-1). Comparability amongst participating metrology institutes is thus demonstrated for the purity determination of high purity metals which have no particular difficulties with their decomposition/dissolution process when solution-based analytical methods are used, or which do not have specific difficulties when direct analysis approaches are used. Nevertheless, further development is required in terms of uncertainty assessment, quantification of nonmetals and the determination of purity of less pure elements and/or for those elements suffering difficulties with the decomposition process.
机译:首次进行国际比较,用于测定高纯度元素的纯度。与会者可以自由选择适合其研究所的应用程序和服务的任何分析方法。测试的材料是高纯度锌,早期已经评估了均匀性,并且以前用于CCQM-K72,用于测定六种定义的金属杂质。通过EDTA滴定法进行Zn质量级分的直接金属测定,或者使用间接方法,其中确定所有杂质或至少主要的方法,并且其总和从100%,或1kg kg的理想纯度中减去(-1)。杂质评估技术包括辉光放电质谱,电感耦合等离子体质谱和载气热提取/燃烧分析。多达91个元素杂质覆盖金属,非金属和半塑料/金属体。由于内部经验或实验性能缺乏,一些参与者为特定的分析任务合同外部实验室,主要用于分析非金属。报道的纯度,表示为高纯度锌材料中的锌质量分数,对所有参与者表现出很好的一致性,相对标准偏差为0.011%。计算的参考值W(Zn)= 0.999 873 kg kg(-1)被分配不对称组合不确定度+0.000 025 kg kg(-1)和-0.000 028 kg kg(-1)。因此,参与测量机构的可比性对于高纯度金属的纯度测定,当使用基于溶液的分析方法时,在使用基于溶液的分析方法时,在它们的分解/溶解过程中没有特别困难,或者在使用直接分析方法时没有具体困难。然而,在不确定评估,非金属的定量和纯度较少的纯度元素的测定和/或患有分解过程困难的纯度的进一步发展。

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