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提高气相色谱中的 LOQ 确定:验证用于气体浓度测量的 Hubaux-Vos 方法。

Enhancing LOD determination in gas chromatography: Validating the Hubaux-Vos method for gas concentration measurement.

机构信息

Gas Metrology Group, Korea Research Institute of Standards and Science (KRISS), Daejeon, 34113, South Korea.

Gas Metrology Group, Korea Research Institute of Standards and Science (KRISS), Daejeon, 34113, South Korea.

出版信息

J Chromatogr A. 2024 Apr 12;1720:464764. doi: 10.1016/j.chroma.2024.464764. Epub 2024 Feb 20.

DOI:10.1016/j.chroma.2024.464764
PMID:38458137
Abstract

The limit of detection (LOD) is a crucial measure in analytical methods, representing the smallest amount of a substance that can be distinguished from background noise. In the realm of gas chromatography (GC), however, determining LOD can be quite subjective, leading to significant variability among researchers. In this study, we validate the Hubaux-Vos method, an International Standards Organization(ISO)-approved approach for determining LOD in gas concentration measurements, using a GC equipped with a discharge ionization detector (DID) and a dynamic dilution system. We employ a gas mixture certified reference material (CRM) of CO, CH, and CO at various concentrations to generate calibration curves for each gas. Subsequently, we estimate the LODs for each gas using the Hubaux-Vos method. Surprisingly, our findings indicate a notable difference between the LODs calculated using the Hubaux-Vos method and those confirmed through experiments. This highlights the importance of critically examining the theoretical foundations of LOD determination. We strongly recommend researchers to scrutinize the principles guiding LOD determination. The method proposed in this study offers an effective way to rigorously validate theoretical approaches for estimating LODs in gas concentration measurements using GC.

摘要

检测限(LOD)是分析方法中的一个关键指标,代表可以从背景噪声中区分出来的最小物质含量。然而,在气相色谱(GC)领域,确定 LOD 可能非常主观,导致研究人员之间存在很大的可变性。在这项研究中,我们使用配备放电电离检测器(DID)和动态稀释系统的 GC 验证了国际标准化组织(ISO)批准的用于确定气体浓度测量中 LOD 的 Hubaux-Vos 方法。我们使用 CO、CH 和 CO 的混合气体有证参考物质(CRM)在不同浓度下生成每个气体的校准曲线。然后,我们使用 Hubaux-Vos 方法估计每个气体的 LOD。令人惊讶的是,我们的发现表明,使用 Hubaux-Vos 方法计算的 LOD 与通过实验确认的 LOD 之间存在显著差异。这突出了批判性地检查 LOD 确定的理论基础的重要性。我们强烈建议研究人员仔细审查指导 LOD 确定的原则。本研究提出的方法提供了一种有效的方法,可以严格验证使用 GC 估计气体浓度测量中 LOD 的理论方法。

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