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Adiabatic Calorimetry as Support to the Certification of High-Purity Liquid Reference Materials

机译:绝热量热量作为高纯度液体参考材料认证的支持

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The certification of high-purity liquid reference materials is supported by several analytical techniques (e.g., gas chromatography, liquid chromatography, Karl Fischer coulometry, inductively coupled plasma mass spectrometry, differential scanning calorimetry, adiabatic calorimetry). Most of them provide information on a limited set of specific impurities present in the sample (indirect methods). Adiabatic calorimetry [1] complementarily provides the overall molar fraction of impurities with sensitivity down to few (mu)mol(centre dot)mol~(-1) without giving any information about the nature of the impurities present in the sample (direct method). As the combination of adiabatic calorimetry with one (or more than one) indirect chemical techniques was regarded as an optimal methodology, NMi VSL developed an adiabatic calorimetry facility for the purity determination of high-purity liquid reference materials [2]. Within the framework of collaboration with NMIJ, a benzene-certified reference material (NMIJ CRM 4002) from NMIJ was analyzed by adiabatic calorimetry at NMi VSL. The results of this measurement are reported in this paper. Good agreement with the NMIJ-certified purity value (99.992 +- 0.003) cmol(centre dot)mol~(-1) was found. The influence of different data analysis approaches (e.g., extrapolation functions, melting ranges) on the measurement results is reported. The uncertainty of the measured purity was estimated.
机译:高纯度液体参考材料的认证由几种分析技术(例如,气相色谱,液相色谱,卡尔费斯基菱形,电感耦合等离子体质谱法,差示扫描量热法,绝热性量热法)负载。其中大多数提供了关于样品中存在的有限特异性杂质(间接方法)的有限特定杂质的信息。绝热性量热法[1]互补地将具有敏感性的杂质的整体摩尔分数提供为敏感性至少于(中央点)mol〜(-1),而不提供样品中存在的杂质性质的任何信息(直接方法) 。随着绝热性热量的组合被一个(或多个)间接化学技术被认为是最佳方法,NMI VSL为高纯度液体参考材料的纯度测定产生了绝热性的热量设施[2]。在与NMIJ合作的框架内,通过NMI VSL的绝热性热量分析了来自NMIJ的苯认证的参考资料(NMIJ CRM 4002)。本文报道了该测量的结果。发现与NMIJ认证纯度值(99.992 + - 0.003)CMOL(中心点)mol〜(-1)良好的吻合良好。报道了不同数据分析方法(例如,外推函数,熔化范围)的影响。估计了测量纯度的不确定性。

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