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Quantification of PAHs and oxy-PAHs on airborne particulate matter in Chiang Mai, Thailand, using gas chromatography high resolution mass spectrometry

机译:使用气相色谱高分辨率质谱法对泰国清迈空气中颗粒物上的多环芳烃和氧-PAHs进行定量

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摘要

An analytical method using gas chromatography high resolution mass spectrometry was developed for the determination of 16 polycyclic aromatic hydrocarbons (PAHs) and 12 oxygenated PAHs (of which 4 diketones, 3 ketones, 4 aldehydes and one anhydride) on atmospheric particulate matter with an aerodynamic diameter less than 10 pm (PM10) The magnetic sector mass spectrometer was run in multiple ion detection mode (MID) with a mass resolution above 10 000 (10% valley definition) and allows for a selective accurate mass detection of the characteristic ions of the target analytes. Instrumental detection limits between 0.04 pg and 1.34 pg were obtained for the PAHs, whereas for the oxyPAHs they ranged between 0.08 pg and 2.13 pg. Pressurized liquid extraction using dichloromethane was evaluated and excellent recoveries ranging between 87% and 98% for the PAHs and between 74% and 110% for 10 oxy-PAHs were obtained, when the optimum extraction temperature of 150 degrees C was applied. The developed method was finally used to determine PAHs and oxy-PAHs concentration levels from particulate matter samples collected in the wet season at 4 different locations in Chiang Mai, Thailand (n = 72). This study brings forward the first concentration levels of oxy-PAHs in Thailand. The median of the sum of the PAHs and oxy-PAHs concentrations was 3.4 ng/m(3) and 1.1 ng/m(3) respectively, which shows the importance of the group of the oxy-PAHs as PM10 constituents. High molecular weight PAHs contributed the most to the Sigma PAHs. For example, benzo[ghi]perylene was responsible for 30-44% of the Sigma PAHs. The highest contribution to Sigma oxy-PAHs came from 1,8-napthalic anhydride (26-78%), followed by anthracene-9,10-dione (4-27%) and 7H-benzo[de]anthracene-7-one (6-26%). Indications of the degradation of PAHs and/or formation of oxy-PAHs were observed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:建立了一种使用气相色谱高分辨率质谱法的分析方法,用于测定空气动力学直径的大气颗粒物上的16种多环芳烃(PAHs)和12种氧化的PAHs(其中4种二酮,3种酮,4种醛和一种酸酐)。少于10 pm(PM10)磁性扇形质谱仪以多离子检测模式(MID)运行,其质量分辨率高于10000(谷值定义为10%),可对目标特征离子进行选择性准确的质量检测分析物。 PAH的仪器检出限在0.04 pg至1.34 pg之间,而oxyPAH的仪器检出限在0.08 pg至2.13 pg之间。评估了使用二氯甲烷的加压液体萃取,当采用150℃的最佳萃取温度时,PAH的回收率极佳,介于10%的PAHs介于87%至98%之间,而74%至110%。最后,将开发的方法用于从泰国清迈(n = 72)四个不同地点的雨季收集的颗粒物样品中确定PAHs和oxy-PAHs的浓度水平。这项研究提出了在泰国的第一个氧-PAHs浓度水平。 PAHs和oxy-PAHs浓度之和的中位数分别为3.4 ng / m(3)和1.1 ng / m(3),这表明oxy-PAHs作为PM10成分的重要性。高分子量PAH对Sigma PAH的贡献最大。例如,苯并g萘占Sigma PAHs的30-44%。对Sigma oxy-PAHs的最大贡献来自1,8-萘酐(26-78%),其次是蒽-9,10-二酮(4-27%)和7H-苯并[蒽] -7-one (6-26%)。观察到PAHs降解和/或氧基-PAHs形成的迹象。 (C)2015 Elsevier Ltd.保留所有权利。

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