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首页> 外文期刊>Environmental research >Evaluating a multipollutant metric for use in characterizing traffic-related air pollution exposures within near-road environments
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Evaluating a multipollutant metric for use in characterizing traffic-related air pollution exposures within near-road environments

机译:评估多体塑化度量用于在近地区环境中表征交通相关的空气污染暴露

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摘要

Accurately characterizing human exposures to traffic-related air pollutants (TRAPs) is critical to public health protection. However, quantifying exposure to this single source is challenging, given its extremely heterogeneous chemical composition. Efforts using single-species tracers of TRAP are, thus, lacking in their ability to accurately reflect exposures to this complex mixture. There have been recent discussions centered on adopting a multipollutant perspective for sources with many emitted pollutants to maximize the benefits of control expenditures as well as to minimize population and ecosystem exposure. As part of a larger study aimed to assess a complete emission-to-exposure pathway of primary traffic pollution and understand exposure of individuals in the near-road environment, an intensive field campaign measured TRAPs and related data (e.g., meteorology, traffic counts, and regional air pollutant levels) in Atlanta along one of the busiest highway corridors in the US. Given the dynamic nature of the near-road environment, a multipollutant exposure metric, the Integrated Mobile Source Indicator (IMSI), which was generated based on emissions-based ratios, was calculated and compared to traditional single-species methods for assessing exposure to mobile source emissions. The current analysis examined how both traditional and non-traditional metrics vary spatially and temporally in the near-road environment, how they compare with each other, and whether they have the potential to offer more accurate means of assigning exposures to primary traffic emissions. The results indicate that compared to the traditional single pollutant specie, the multipollutant IMSI metric provided a more spatially stable method for assessing exposure, though variations occurred based on location with varying results among the six sites within a kilometer of the highway.
机译:对交通相关的空气污染物(陷阱)准确地表征人体暴露对公共卫生保护至关重要。然而,考虑到其极其异质化学成分,定量暴露于该单一来源是具有挑战性的。因此,使用单一物种陷阱的追踪器的努力是缺乏能够准确反映这种复杂混合物的暴露的能力。最近讨论的讨论采用多体塑化的透视,为许多发出的污染物最大化控制支出的益处以及最小化人口和生态系统暴露。作为一个更大的研究的一部分,旨在评估近距离环境中的初级交通污染的完整排放到暴露途径,了解近乎道路环境中的个人暴露,一个集中的陷阱和相关数据(例如,气象,交通计数,和区域空气污染物水平沿着美国最繁忙的公路走廊沿着亚特兰大。鉴于近道环境的动态性质,计算了基于基于发射的比率生成的多体曝光度量,集成的移动源指示器(IMSI),并与传统的单种式方法进行比较,用于评估移动到移动源排放。目前的分析检测了传统和非传统度量的近乎道路环境中的传统和非传统度量如何,以及它们如何相互比较,以及它们是否有可能为主要交通排放提供更准确的分配风险的方法。结果表明,与传统的单一污染物特性相比,多能器IMSI度量提供了一种更空间稳定的评估曝光方法,但是基于位于高速公路范围内的六个站点之间的位置发生变化的变化。

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