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Disentangling vehicular emission impact on urban air pollution using ethanol as a tracer

机译:以乙醇为示踪剂分析汽车排放对城市空气污染的影响

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摘要

The Sao Paulo Metropolitan Area is a unique case worldwide due to the extensive use of biofuel, particularly ethanol, by its large fleet of nearly 8 million cars. Based on source apportionment analysis of Organic Aerosols in downtown Sao Paulo, and using ethanol as tracer of passenger vehicles, we have identified primary emissions from light-duty-vehicles (LDV) and heavy-duty-vehicles (HDV), as well as secondary process component. Each of those factors mirror a relevant primary source or secondary process in this densely occupied area. Using those factors as predictors in a multiple linear regression analysis of a wide range of pollutants, we have quantified the role of primary LDV or HDV emissions, as well as atmospheric secondary processes, on air quality degradation. Results show a significant contribution of HDV emissions, despite contributing only about 5% of vehicles number in the region. The latter is responsible, for example, of 40% and 47% of benzene and black carbon atmospheric concentration, respectively. This work describes an innovative use of biofuel as a tracer of passenger vehicle emissions, allowing to better understand the role of vehicular sources on air quality degradation in one of most populated megacities worldwide.
机译:圣保罗大都会区是世界范围内的一个独特案例,这是由于其近800万辆大型车队广泛使用生物燃料,尤其是乙醇。根据圣保罗市区有机气溶胶的来源分配分析,并使用乙醇作为乘用车的示踪剂,我们确定了轻型车辆(LDV)和重型车辆(HDV)的主要排放以及次级排放过程组件。这些因素中的每一个都反映了这个人口密集地区的相关主要来源或次要过程。使用这些因素作为对各种污染物的多元线性回归分析的预测指标,我们已经量化了主要LDV或HDV排放以及大气次级过程对空气质量退化的作用。结果表明,尽管仅占该地区车辆总数的5%,但HDV排放量仍占很大比例。后者例如分别占苯和黑碳大气浓度的40%和47%。这项工作描述了生物燃料作为乘用车排放示踪剂的创新用途,从而使人们能够更好地了解车辆在全球人口最多的大城市之一中对空气质量退化的作用。

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