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Optimisation of pre-treatment and ionisation for GC/MS analysis for the determination of chlorinated PAHs in atmospheric particulate samples

机译:优化用于GC / MS分析的预处理和离子化方法,用于测定大气颗粒样品中的氯化PAHs

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摘要

Chlorinated polycyclic aromatic hydrocarbons (ClPAHs) have been discovered to represent ubiquitous environmental pollutants in the last decade. In the present study, sample pre-treatment and ionisation conditions associated with the gas chromatography/mass spectrometry (GC/MS) analysis of ClPAHs were evaluated. The optimal pre-treatment of ambient air particulate samples was achieved using fractionation over silica gel with 10% dichloromethane in n-hexane as the eluent. The optimised condition of GC/MS with electron impact ionisation permitted analysis of all target ClPAHs. Not all target ClPAHs were detected using GC/MS with negative chemical ionisation, although this technique exhibited greater sensitivity for several of the compounds compared to electron impact ionisation. The analytical method was applied to the survey of ClPAHs in atmospheric particulate matter obtained close to an industrial site and in a standard sample of tunnel dust. Fourteen and eighteen species of ClPAHs were detected in the industrial air samples and tunnel dust, respectively, confirming the capability of the method. The compositions of ClPAHs were significantly different between air samples and tunnel dust. It suggests that alternative emission sources rather than vehicle exhaust could play a significant role in the air.
机译:在过去的十年中,已发现氯化多环芳烃(ClPAHs)代表了普遍存在的环境污染物。在本研究中,评估了与ClPAHs的气相色谱/质谱(GC / MS)分析相关的样品预处理和电离条件。使用在正己烷中的10%二氯甲烷作为洗脱液的硅胶分馏,可实现对环境空气颗粒样品的最佳预处理。具有电子碰撞电离的GC / MS优化条件允许分析所有目标ClPAH。使用负化学电离的GC / MS并不能检测到所有目标ClPAH,尽管与电子碰撞电离相比,该技术对几种化合物显示出更高的灵敏度。该分析方法适用于调查靠近工业现场的大气颗粒物和标准隧道尘埃中的ClPAHs。在工业空气样品和隧道粉尘中分别检测到14种和18种ClPAHs,证实了该方法的能力。 ClPAHs的组成在空气样本和隧道粉尘之间存在显着差异。这表明,替代排放源而不是车辆废气可以在空气中发挥重要作用。

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