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Performance evaluation of polycyclic aromatic hydrocarbons analysis in sediment from proficiency testing with metrological reference values

机译:用计量参考值进行的能力验证对沉积物中多环芳烃分析的性能评估

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摘要

This paper describes a metrological approach to evaluate the measurement capability of laboratories participating in two proficiency testing (PT) programmes involving the analysis of five polycyclic aromatic hydrocarbons (PAHs) in sediment samples. Reference values of PAHs in the programmes for performance assessment were obtained from an accurate isotope dilution gas chromatography mass spectrometry (ID-GCMS) method which was thoroughly validated and verified. Isotope dilution mass spectrometry (IDMS) technique usually has a well-defined measurement uncertainty budget and a traceability link to an International System of Units. Provision of the metrological reference values in PT enables the establishment of a technical platform to assess the actual competence of the participating laboratories in sediment PAHs analysis. Results of the PT programmes showed that about 80 % of the laboratories employed gas chromatography in their analyses and the remaining used liquid chromatography. Irrespective of the techniques being used, however, the majority of the participating laboratories were observed to underestimate values in which the mean values of the five reported PAHs were less than those of the ID-GCMS-derived reference values by 13–20 %. Only 41–44 % of the participating laboratories were able to achieve satisfactory z-scores. The present study revealed that the reinforcement of the capability for accurate measurement of PAHs in sediment samples in laboratories worldwide should be addressed.
机译:本文介绍了一种计量方法,用于评估参与两个能力验证计划(PT)计划的实验室的测量能力,该计划涉及分析沉积物样品中的五种多环芳烃(PAH)。通过准确的同位素稀释气相色谱质谱法(ID-GCMS)获得了性能评估程序中PAH的参考值,该方法已得到充分验证和验证。同位素稀释质谱(IDMS)技术通常具有定义明确的测量不确定性预算,并且具有与国际单位制的可追溯性链接。通过在PT中提供计量参考值,可以建立一个技术平台来评估参与实验室进行沉积物PAHs分析的实际能力。 PT程序的结果表明,大约80%的实验室在分析中使用了气相色谱法,其余的则使用了液相色谱法。但是,无论使用哪种技术,都观察到大多数参与实验室的值都低估了,其中报告的五个PAH的平均值比ID-GCMS得出的参考值小13-20%。只有41–44%的参与实验室能够获得令人满意的z评分。本研究表明,应该解决在全世界实验室中增强对沉积物样品中PAHs的准确测量的能力。

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