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轻型汽油车VOCs排放特征及其大气反应活性
引用本文:姚森,魏巍,程水源,王刚,张晗宇,陈国磊.轻型汽油车VOCs排放特征及其大气反应活性[J].中国环境科学,2016,36(10):2923-2929.
作者姓名:姚森  魏巍  程水源  王刚  张晗宇  陈国磊
作者单位:北京工业大学区域大气复合污染防治北京市重点实验室, 北京 100124
基金项目:国家自然科学基金资助项目(91544232);国家环保公益性行业科研专项(201409006);北京市科技计划课题资助项目(Z141100001014002)
摘    要:采用车载式尾气测量系统对国Ⅱ、国Ⅲ、国Ⅳ轻型汽油车在实际道路排放的尾气进行样品采集,并采用GC-MS、GC-FID对尾气中烷烃、烯烃、苯系物进行测试分析.结果表明轻型汽油车的VOCs排放因子随排放标准的提高显著降低,国Ⅱ、国Ⅲ、国Ⅳ3种车型的排放因子分别为49.62、21.65、6.72mg/km.苯系物占测定VOCs组分的比例最高,占到总VOCs的47.43%~60.52%.由排放的VOCs估算获得不同标准车型的臭氧生成潜势及二次有机气溶胶生成潜势分别为24.64~234.14mg/km和13.24~125.32mg/km.在对国Ⅲ车型进行的不同速度的实验结果显示,轻型汽油车尾气VOCs排放因子及相应的臭氧生成潜势和二次有机气溶胶生成潜势均随实验车速的升高而降低.

关 键 词:轻型汽油车  臭氧生成潜势  二次有机气溶胶  
收稿时间:2016-02-24

Emission characteristics and chemical reactivity of volatile organic compounds from light-duty gasoline vehicles
YAO Sen,WEI Wei,CHENG Shui-yuan,WANG Gang,ZHANG Hang-yu,CHEN Guo-lei.Emission characteristics and chemical reactivity of volatile organic compounds from light-duty gasoline vehicles[J].China Environmental Science,2016,36(10):2923-2929.
Authors:YAO Sen  WEI Wei  CHENG Shui-yuan  WANG Gang  ZHANG Hang-yu  CHEN Guo-lei
Institution:Key Laboratory of Beijing on Regional Air Pollution Control, Beijing University of Technology, Beijing 100124, China
Abstract:The VOCs samples emitted from light-duty gasoline vehicles ranging from China II to China IV was collected by portableemission measurement system (PEMS). Alkanes, alkenes and aromatics in the exhaust were analyzed using GC-MS and GC-FID. Results demonstrated that the emission reductions of VOCs from light-duty gasoline vehicles had been achieved as the control technology become more rigorous, China II, China III and China IV vehicles were 49.62, 21.65 and 6.72mg/km, respectively. Aromatics were the dominant VOCs with weight percentages of 47.43%~60.52%. The ozone formation potentials and SOA formation potential for different emission standards were 24.64 ~ 234.14mg/km and 13.24 ~125.32mg/km. Driving speeds also influenced the VOCs emissions from the tested China III vehicles, the VOCs emission factors, ozone formation potential (OFP) and SOA formation potential from light-duty gasoline vehicles were dropped with the increase of the speed.
Keywords:light-duty gasoline vehicles  ozone formation potential  SOA  
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