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Direct Analysis of Low-Volatile Molecular Marker Extract from Airborne Particulate Matter Using Sensitivity Correction Method

机译:灵敏度校正法直接分析机载颗粒物质中挥发性低的分子标记物

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摘要

Molecular marker analysis of environmental samples often requires time consuming preseparation steps. Here, analysis of low-volatile nonpolar molecular markers (5-6 ring polycyclic aromatic hydrocarbons or PAHs, hopanoids, and n-alkanes) without the preseparation procedure is presented. Analysis of artificial sample extracts was directly conducted by gas chromatography-mass spectrometry (GC-MS). After every sample injection, a standard mixture was also analyzed to make a correction on the variation of instrumental sensitivity caused by the unfavorable matrix contained in the extract. The method was further validated for the PAHs using the NIST standard reference materials (SRMs) and then applied to airborne particulate matter samples. Tests with the SRMs showed that overall our methodology was validated with the uncertainty of ~30%. The measurement results of airborne particulate matter (PM) filter samples showed a strong correlation between the PAHs, implying the contributions from the same emission source. Analysis of size-segregated PM filter samples showed that their size distributions were found to be in the PM smaller than 0.4 μm aerodynamic diameter. The observations were consistent with our expectation of their possible sources. Thus, the method was found to be useful for molecular marker studies.
机译:环境样品的分子标记分析通常需要耗时的预分离步骤。在此,无需预先分离即可分析低挥发性非极性分子标记物(5-6个环多环芳烃或PAH,类环烷烃和正构烷烃)。人造样品提取物的分析直接通过气相色谱-质谱(GC-MS)进行。每次进样后,还要对标准混合物进行分析,以校正由提取物中所含不利基质引起的仪器灵敏度变化。使用NIST标准参考材料(SRM)对PAHs进一步验证了该方法,然后将其应用于空气中的颗粒物样品。通过SRM进行的测试表明,总体而言,我们的方法论得到了〜30%的不确定性验证。空气中颗粒物(PM)过滤器样品的测量结果显示PAH之间存在很强的相关性,这暗示着同一排放源的贡献。对按尺寸分类的PM过滤器样品的分析表明,它们的尺寸分布存在于小于0.4μμm空气动力学直径的PM中。这些观察结果与我们对它们可能来源的预期一致。因此,发现该方法可用于分子标记研究。

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