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On-road emission factor distributions of individual diesel vehicles in and around Beijing, China

机译:中国北京及周边地区个别柴油车辆的道路排放因子分布

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摘要

This paper reports findings of a recent field study that characterized the on-road emissions of individual diesel vehicles in and around Beijing, China during November and December of 2009. We successfully sampled 230 individual trucks on 4 major expressways around the city as well as 57 individual buses in the city using refined mobile chasing techniques and fast response instruments. Emission factors (EF) for carbon monoxide (CO), black carbon (BC) and paniculate matter with diameters less than 0.5 μm (PM_(0.5)) are derived from the measurements, which are consistent with the results from laboratory dynamometer tests. The PM_(0.5) number emission factor distributions demonstrate consistent bimodal modes with peaks around 10 nm and 80 nm, while the mass emission factor distributions demonstrate a unimodal maximum around 110 nm for a majority of the trucks. The BC emissions are shown to be highly correlated with the mass emission of particles with 100-250 nm diameters, which are in good agreement with the results from previous studies. A number of important policy implications are discussed based on the results from this study. First, we identified "heavy emitters" in the on-road fleet we encountered, finding that 5% of diesel trucks in this sample are responsible for 50% of total BC emissions, and 20% of the trucks are responsible for 50% CO and PM_(0.5) number emissions, 60% PM_(0.5) mass emissions and over 70% of BC emissions. This suggests that emissions control programs should include identifying and removing heavy emitters from the road or improving their emissions. Second, the BC and PM_(0.5) number emission factors of trucks registered in regions outside Beijing are significantly higher than those of Beijing-registered trucks, suggesting that improving engine and fuel standards in Beijing alone is not sufficient in reducing the traffic-related air pollution in Beijing. Third, the significantly lower emissions from Euro IV and CNG buses compared to the Euro II and Euro III buses support that introducing dean-burning buses is an effective way to reduce the overall vehicle emissions for the pollutants studied. Fourth, our refined chasing method demonstrates a cost-effective approach to characterize the emissions from a large number of on-road diesel vehicles. Further studies with large sample sizes are critical to constructing more accurate mobile emission inventories to represent the on-road vehicle population.
机译:本文报告了一项最近的现场研究的结果,该研究表征了2009年11月和12月在中国北京及周边地区个别柴油车辆的道路排放情况。我们成功采样了该城市周围4条主要高速公路上的230辆卡车的卡车以及57辆使用完善的移动追踪技术和快速响应工具,在城市中使用单个公共汽车。通过测量得出一氧化碳(CO),黑碳(BC)和直径小于0.5μm的颗粒物(PM_(0.5))的排放因子(EF),这与实验室测功机测试的结果一致。 PM_(0.5)数发射因子分布显示出一致的双峰模式,峰值在10 nm和80 nm左右,而大多数卡车的质量排放因子分布显示出最大单峰在110 nm附近。已证明,BC排放与直径为100-250 nm的颗粒的质量排放高度相关,这与以前的研究结果非常吻合。根据这项研究的结果,讨论了许多重要的政策含义。首先,我们在遇到的公路车队中确定了“重排放者”,发现该样本中有5%的柴油卡车占总BC排放的50%,而有20%的卡车占50%的CO和PM_(0.5)数量排放,60%PM_(0.5)质量排放和70%以上的BC排放。这表明,排放控制计划应包括识别和清除道路上的重排放源或改善其排放。其次,在北京以外地区注册的卡车的BC和PM_(0.5)数排放因子显着高于在北京注册的卡车,这表明仅提高北京的发动机和燃油标准不足以减少与交通有关的空气北京的污染。第三,与欧盟II型和欧盟III型相比,欧盟IV型和CNG公交车的排放量显着降低,这表明引入迪恩燃烧型公交车是减少所研究污染物总体车辆排放的有效方法。第四,我们完善的追踪方法展示了一种具有成本效益的方法来表征大量公路柴油车辆的排放。对于大样本量的进一步研究对于构建更准确的移动排放清单以代表公路车辆人口至关重要。

著录项

  • 来源
    《Atmospheric environment》 |2011年第2期|p.503-513|共11页
  • 作者单位

    Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY 14853, USA;

    Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY 14853, USA;

    Department of Environmental Science and Engineering Tsinghua University, Beijing 100084, China;

    Department of Occupational and Environmental Health, Peking University School of Public Health, Beijing 100083, China;

    Sibley School of Mechanical and Aerospace Engineering, Cornell University, Ithaca, NY 14853, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    climate change; air quality; diesel; size distribution;

    机译:气候变化;空气质量;柴油机;尺寸分布;

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