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首页> 外文期刊>Atmospheric environment >Roadside measurements of size-segregated particulate organic compounds near gasoline and diesel-dominated freeways in Los Angeles, CA
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Roadside measurements of size-segregated particulate organic compounds near gasoline and diesel-dominated freeways in Los Angeles, CA

机译:在加利福尼亚洛杉矶,以汽油和柴油为主的高速公路附近,按尺寸分类的颗粒状有机物的路边测量

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摘要

Individual organic compounds such as hopanes and steranes (originating in lube oil) and selected polycyclic aromatic compounds (PAHs) (generated via combustion) found in particulate emissions from vehicles have proven useful in source apportionment of ambient particulate matter (PM). Detailed information on the size-segregated (ultrafine and accumulation mode) chemical characteristics of organic PM during the winter season originating from a pure gasoline traffic freeway (CA-110), and a mixed-fleet freeway with the highest fraction of heavy-duty diesel vehicles in the state of California (1-710) is reported in this study. Hopanes and steranes as well as high molecular weight PAHs such as benzo(ghi)perylene (BgP) and coronene levels are found comparable near these freeways, while elemental carbon (EC) and lighter molecular weight PAHs are found much elevated near 1-710 compared to CA-110. The roadway organic speciation data presented here are compared with the emission factors (EFs) measured in the Caldecott tunnel, Berkeley, CA [Phuleria, H.C., Geller, M.D., Fine, P.M., Sioutas, C, 2006. Size-resolved emissions of organic tracers from light- and heavy-duty vehicles measured in a California roadway tunnel. Environmental Science and Technology 40, 4109-4118] for light-duty vehicles (LDVs) and heavy-duty vehicles. Very good agreement is observed between CA-110 measurements and LDV EFs as well as 1-710 measurements and corresponding reconstructed EFs from Caldecott tunnel for hopanes and steranes as well as heavier PAHs such as BgP and coronene. Our results, therefore, suggest that the EFs for hopanes and steranes obtained in tunnel environments, where emissions are averaged over a large vehicle-fleet, enable reliable source apportionment of ambient PM, given the overall agreement between the roadway vs tunnel concentrations of these species.
机译:在车辆微粒排放中发现的单个有机化合物,如hop烷和甾烷(源自润滑油)和选定的多环芳族化合物(PAHs)(通过燃烧产生)已被证明可用于环境颗粒物(PM)的来源分配。有关冬季由纯汽油交通高速公路(CA-110)和重载柴油比例最高的混合车队高速公路产生的有机PM的尺寸分离(超细和累积模式)化学特征的详细信息这项研究报告了加利福尼亚州(1-710)的车辆。在这些高速公路附近发现了Hop烷和甾烷以及高分子量PAH,例如苯并(ghi)ylene(BgP)和并苯的水平相当,而元素碳(EC)和较轻分子量的PAHs在1-710附近明显升高到CA-110。将此处提供的巷道有机形态数据与在加利福尼亚州伯克利市的Caldecott隧道中测量的排放因子(EFs)进行了比较[Phuleria,HC,Geller,MD,Fine,PM,Sioutas,C,2006。在加州道路隧道中测量的轻型和重型车辆的示踪剂。环境科学与技术40,第4109-4118页],适用于轻型车辆(LDV)和重型车辆。在CA-110测量值和LDV EFs以及1-710测量值和Caldecott隧道的相应重建EFs中,对于hop烷和甾烷以及较重的PAH(例如BgP和co烯)观察到非常好的一致性。因此,我们的研究结果表明,考虑到这些物种的巷道与隧道浓度之间的总体一致性,在大型车队中平均排放的隧道环境中的hop烷和甾烷的EFs能够可靠地分配环境PM。 。

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