Source profiles of volatile organic compounds (VOCs) measured in China: Part I

环境化学 汽油 乙苯 石油化工 挥发性有机化合物 化学 火焰离子化检测器 二甲苯 柴油 甲苯 气相色谱法 有机化学 色谱法
作者
Ying Liu,Min Shao,Linlin Fu,Sihua Lü,Limin Zeng,Dagang Tang
出处
期刊:Atmospheric Environment [Elsevier BV]
卷期号:42 (25): 6247-6260 被引量:887
标识
DOI:10.1016/j.atmosenv.2008.01.070
摘要

The profiles of major volatile organic compound (VOC) sources in China, including vehicle exhaust, gasoline vapor, paint, asphalt, industrial and residential coal burning, biomass burning, and the petrochemical industry, were experimentally determined. Source samples were taken using a dilution chamber for mobile and stationary sources, biomass burning in an actual Chinese farmer's house, and ambient air in a petrochemical industrial area. The concentrations of 92 VOC species were quantified using canister sampling and a gas chromatography–flame ionization detection/mass spectrometry system, and VOC source profiles were developed for source apportionment of VOCs in the Pearl River Delta region. Based on the measurement of source profiles, possible tracers for various emission sources were identified; e.g., 2-methylpentane and 1,3-butadiene could be used as tracers for vehicle exhaust; the characteristic compounds of architectural coating were aromatics such as toluene and m,p-xylene; the light hydrocarbons, namely n-butane, trans-2-butene, and n-pentane, dominated the composition of gasoline vapor; and n-nonane, n-decane, and n-undecane were found to be typical of diesel vapor and asphalt application processes. As different emission sources are characterized by overlapping VOC species, the ratio of possible VOC tracers could be used to assess the contribution of various sources. The ratios between n-butane and isobutane, 1,3-butadiene and isoprene, and the ratios of aromatics (e.g., toluene to benzene and ethylbenzene to m,p-xylene) in the measured sources were compared.
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