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国家教育部博士点基金(20110071130003)

作品数:1 被引量:7H指数:1
发文基金:国家教育部博士点基金国家自然科学基金更多>>
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Do vehicular emissions dominate the source of C6–C8 aromatics in the megacity Shanghai of eastern China?被引量:7
2015年
The characteristic ratios of volatile organic compounds(VOCs) to i-pentane, the indicator of vehicular emissions, were employed to apportion the vehicular and non-vehicular contributions to reactive species in urban Shanghai. Two kinds of tunnel experiments, one tunnel with more than 90% light duty gasoline vehicles and the other with more than 60% light duty diesel vehicles, were carried out to study the characteristic ratios of vehicle-related emissions from December 2009 to January 2010. Based on the experiments, the characteristic ratios of C6–C8aromatics to i-pentane of vehicular emissions were 0.53 ± 0.08(benzene), 0.70 ± 0.12(toluene),0.41 ± 0.09(m,p-xylenes), 0.16 ± 0.04(o-xylene), 0.023 ± 0.011(styrene), and 0.15 ± 0.02(ethylbenzene), respectively. The source apportionment results showed that around 23.3% of C6–C8 aromatics in urban Shanghai were from vehicular emissions, which meant that the non-vehicular emissions had more importance. These findings suggested that emission control of non-vehicular sources, i.e. industrial emissions, should also receive attention in addition to the control of vehicle-related emissions in Shanghai. The chemical removal of VOCs during the transport from emissions to the receptor site had a large impact on the apportionment results. Generally, the overestimation of vehicular contributions would occur when the VOC reaction rate constant with OH radicals(k OH) was larger than that of the vehicular indicator, while for species with smaller k OH than the vehicular indicator, the vehicular contribution would be underestimated by the method of characteristic ratios.
Hongli WangQian WangJianmin ChenChanghong ChenCheng HuangLiping QiaoShengrong LouJun Lu
在线小时分辨离子色谱技术在PM2.5研究中的应用
<正>本文总结了使用在线大气气体与气溶胶分析仪(MARGA)在我国PM2.5研究中的进展,着重阐述了该小时分辨离子色谱技术在PM2.5化学组成、灰霾形成机制、沙尘混合气溶胶的研究中的应用。通过2008年5月以来在上海、杭...
陈建民
关键词:大气颗粒物化学成分
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