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调查加利福尼亚州洛杉矶市三个社区轻型汽油车的实际排放特征及其与当地社会经济状况的关系。

Investigating the real-world emission characteristics of light-duty gasoline vehicles and their relationship to local socioeconomic conditions in three communities in Los Angeles, California.

作者信息

Park Seong Suk, Vijayan Abhilash, Mara Steve L, Herner Jorn D

机构信息

a California Air Resources Board , Research Division , Sacramento , CA , USA.

出版信息

J Air Waste Manag Assoc. 2016 Oct;66(10):1031-44. doi: 10.1080/10962247.2016.1197166.

Abstract

UNLABELLED

This paper discusses results from a vehicular emissions research study of over 350 vehicles conducted in three communities in Los Angeles, CA, in 2010 using vehicle chase measurements. The study explores the real-world emission behavior of light-duty gasoline vehicles, characterizes real-world super-emitters in the different regions, and investigates the relationship of on-road vehicle emissions with the socioeconomic status (SES) of the region. The study found that in comparison to a 2007 earlier study in a neighboring community, vehicle emissions for all measured pollutants had experienced a significant reduction over the years, with oxides of nitrogen (NOX) and black carbon (BC) emissions showing the largest reductions. Mean emission factors of the sampled vehicles in low-SES communities were roughly 2-3 times higher for NOX, BC, carbon monoxide, and ultrafine particles, and 4-11 times greater for fine particulate matter (PM2.5) than for vehicles in the high-SES neighborhood. Further analysis indicated that the emission factors of vehicles within a technology group were also higher in low-SES communities compared to similar vehicles in the high-SES community, suggesting that vehicle age alone did not explain the higher vehicular emission in low-SES communities. Evaluation of the emission factor distribution found that emissions from 12% of the sampled vehicles were greater than five times the mean from all of the sampled fleet, and these vehicles were consequently categorized as "real-world super-emitters." Low-SES communities had approximately twice as many super-emitters for most of the pollutants as compared to the high-SES community. Vehicle emissions calculated using model-year-specific average fuel consumption assumptions suggested that approximately 5% of the sampled vehicles accounted for nearly half of the total CO, PM2.5, and UFP emissions, and 15% of the vehicles were responsible for more than half of the total NOX and BC emissions from the vehicles sampled during the study.

IMPLICATIONS

This study evaluated the real-world emission behavior and super-emitter distribution of light-duty gasoline vehicles in California, and investigated the relationship of on-road vehicle emissions with local socioeconomic conditions. The study observed a significant reduction in vehicle emissions for all measured pollutants when compared to an earlier study in Wilmington, CA, and found a higher prevalence of high-emitting vehicles in low-socioeconomic-status communities. As overall fleet emissions decrease from stringent vehicle emission regulations, a small fraction of the fleet may contribute to a disproportionate share of the overall on-road vehicle emissions. Therefore, this work will have important implications for improving air quality and public health, especially in low-SES communities.

摘要

未标注

本文讨论了2010年在加利福尼亚州洛杉矶的三个社区对350多辆车辆进行的车辆排放研究结果,该研究采用车辆跟踪测量法。该研究探索了轻型汽油车在实际中的排放行为,对不同区域实际中的超级排放源进行了特征描述,并研究了道路车辆排放与该区域社会经济地位(SES)之间的关系。研究发现,与2007年在邻近社区进行的早期研究相比,多年来所有测量污染物的车辆排放都有显著减少,其中氮氧化物(NOX)和黑碳(BC)排放减少幅度最大。低社会经济地位社区中采样车辆的氮氧化物、黑碳、一氧化碳和超细颗粒物的平均排放因子大约是高社会经济地位社区车辆的2至3倍,细颗粒物(PM2.5)的平均排放因子则是其4至11倍。进一步分析表明,与高社会经济地位社区的类似车辆相比,低社会经济地位社区中同一技术组内车辆的排放因子也更高,这表明仅车辆使用年限并不能解释低社会经济地位社区中车辆排放较高的现象。对排放因子分布的评估发现,12%的采样车辆排放量大于所有采样车辆车队平均排放量的五倍,因此这些车辆被归类为“实际中的超级排放源”。与高社会经济地位社区相比,低社会经济地位社区中大多数污染物的超级排放源数量大约是其两倍。使用特定车型年平均燃料消耗假设计算的车辆排放量表明,大约5%的采样车辆占一氧化碳、PM2.5和超细颗粒物总排放量的近一半,15%的车辆占研究期间采样车辆氮氧化物和黑碳总排放量的一半以上。

启示

本研究评估了加利福尼亚州轻型汽油车的实际排放行为和超级排放源分布,并研究了道路车辆排放与当地社会经济状况之间的关系。与加利福尼亚州威尔明顿早期的一项研究相比,该研究观察到所有测量污染物的车辆排放都有显著减少,并发现低社会经济地位社区中高排放车辆的比例更高。随着严格的车辆排放法规使整个车队的排放量下降,一小部分车辆可能会导致道路车辆总排放量中不成比例的份额。因此,这项工作对于改善空气质量和公众健康具有重要意义,尤其是在低社会经济地位社区。

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