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High Resolution Spatial and Temporal Mapping of Traffic-Related Air Pollutants

机译:交通相关空气污染物的高分辨率时空图

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Vehicle traffic is one of the most significant emission sources of air pollutants in urban areas. While the influence of mobile source emissions is felt throughout an urban area, concentrations from mobile emissions can be highest near major roadways. At present, information regarding the spatial and temporal patterns and the share of pollution attributable to traffic-related air pollutants is limited, in part due to concentrations that fall sharply with distance from roadways, as well as the few monitoring sites available in cities. This study uses a newly developed dispersion model (RLINE) and a spatially and temporally resolved emissions inventory to predict hourly PM2.5 and NOx concentrations across Detroit (MI, USA) at very high spatial resolution. Results for annual averages and high pollution days show contrasting patterns, the need for spatially resolved analyses, and the limitations of surrogate metrics like proximity or distance to roads. Data requirements, computational and modeling issues are discussed. High resolution pollutant data enable the identification of pollutant “hotspots”, “project-level” analyses of transportation options, development of exposure measures for epidemiology studies, delineation of vulnerable and susceptible populations, policy analyses examining risks and benefits of mitigation options, and the development of sustainability indicators integrating environmental, social, economic and health information.
机译:车辆交通是城市地区最重要的空气污染物排放源之一。尽管在整个城市地区都感受到了移动源排放的影响,但是在主要道路附近,移动源排放的浓度可能最高。目前,关于与交通相关的空气污染物所造成的时空格局和污染份额的信息有限,部分原因是浓度随着距道路的距离而急剧下降,并且城市中的监测点很少。这项研究使用了新开发的弥散模型(RLINE)和时空分解的排放清单,以很高的空间分辨率预测了底特律(美国密歇根州)的每小时PM2.5和NOx浓度。年度平均值和高污染天数的结果显示出截然不同的模式,对空间分辨分析的需求以及诸如距离或距离之类的替代指标的局限性。讨论了数据需求,计算和建模问题。高分辨率的污染物数据可以识别污染物的“热点”,对运输方案进行“项目级”分析,为流行病学研究制定暴露措施,确定易受害人群和易感人群,对缓解措施的风险和收益进行政策分析,以及制定整合环境,社会,经济和健康信息的可持续性指标。

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