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High-precision GC-TCD for verification of gravimetricalry prepared primary gas standards of oxygen in nitrogen

机译:高精度GC-TCD,用于验证重量法制得的氮气中氧气的一次气体标准

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Gravimetric preparation method is one of the most precise and accurate methods for preparing primary standard gas mixtures (PSMs). Although the principle and execution of the gravimetric method are not complicated, the uncertainty of the gravimetric method is so small that a seemingly minor error can result in an incorrect amount fraction of the PSM. Therefore, verifying the amount fraction of the PSMs is a necessary step. We perform a high-precision comparison between the PSMs of oxygen in nitrogen (~100 μmol per mol) using a well-stabilized gas chromatograph with a thermal conductivity detector (GC-TCD) system in conjunction with high-precision pressure monitoring for sample amount correction and a quality-control cylinder technique in which the PSMs were analyzed against a reference cylinder, which leads to the cancellation of the drift in the sensitivity of the GC-TCD. After optimization of the measurement conditions, the relative expanded uncertainty reaches 0.022% (coverage factor k = 2), which is equivalent to the uncertainty of the PSMs. The Consultative Committee for Amount of Substance of the Comite International des Poids et Mesures performed a key comparison CCQM-K53, in which one of the PSMs used in this work was compared and agreed well with PSMs prepared by other National Metrology Institutes. These results show that the GC-TCD system developed in this work is sufficiently reliable, precise and accurate to verify PSMs.
机译:重量法制备方法是制备主要标准气体混合物(PSM)的最精确,最准确的方法之一。尽管重量分析法的原理和执行并不复杂,但重量分析法的不确定性很小,以至于看似很小的错误都会导致PSM的含量分数不正确。因此,验证PSM的含量分数是必要的步骤。我们使用稳定的气相色谱仪和热导检测器(GC-TCD)系统,结合高精度压力监测样品量,对氮中氧气的PSM(〜100μmol/ mol)进行高精度比较校正和质量控制柱技术,其中相对于参考柱分析了PSM,从而消除了GC-TCD灵敏度的漂移。在优化测量条件之后,相对扩展不确定度达到0.022%(覆盖系数k = 2),这与PSM的不确定度相当。国际人造革粉和化学物质含量协商委员会进行了关键比较CCQM-K53,其中比较了这项工作中使用的一种PSM,并与其他国家计量学会制备的PSM很好地吻合。这些结果表明,在这项工作中开发的GC-TCD系统具有足够的可靠性,准确性和准确性,可以验证PSM。

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