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High-Resolution Mobile Monitoring of Carbon Monoxide and Ultrafine Particle Concentrations in a Near-Road Environment

机译:在近道路环境中对一氧化碳和超细颗粒浓度进行高分辨率的移动监测

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摘要

Assessment of near-road air quality is challenging in urban environments that have roadside structures, elevated road sections, or depressed roads that may impact the dispersion of traffic emissions. Vehicles traveling on arterial roadways may also contribute to air pollution spatial variability in urban areas. To characterize the nature of near-road air quality in a complex urban environment, an instrumented all-electric vehicle was deployed to perform high spatial- and temporal-resolution mapping of ultra-fine particles (UFPs, particle diameter <100 nm) and carbon monoxide (CO). Sampling was conducted in areas surrounding a highway in Durham, NC, with multiple repeats of the driving route accomplished within a morning or evening commute time frame. Six different near-road transects were driven, which included features such as noise barriers, vegetation, frontage roads, and densely built houses. Under downwind conditions, median UFP and CO levels in near-road areas located 20-150 m from the highway were a factor of 1.8 and 1.2 higher, respectively, than in areas characterized as urban background. Sampling in multiple near-road neighborhoods during downwind conditions revealed significant variability in absolute UFP and CO concentrations as well as in the rate of concentration attenuation with increasing distance from the highway. During low-speed meandering winds, regional UFP and CO concentrations nearly doubled relative to crosswind conditions; however, near-road UFP levels were still higher than urban background levels by a factor of 1.2, whereas near-road CO concentrations were not significantly different than the urban background.
机译:在具有路边结构,高架路段或低洼道路的城市环境中,评估近路空气质量具有挑战性,这可能会影响交通排放的扩散。在主干道上行驶的车辆也可能导致市区的空气污染空间变化。为了表征复杂城市环境中近路空气质量的性质,部署了仪表化全电动汽车以执行超细颗粒(UFP,粒径<100 nm)和碳的高时空分辨率映射一氧化碳(CO)。在北卡罗来纳州达勒姆市的高速公路周围地区进行了采样,在早晚通勤时间内完成了多次重复的行驶路线。驾驶了六个不同的近地横断面,其中包括隔音屏障,植被,临街道路和密集建造的房屋等特征。在顺风条件下,距高速公路20-150 m的近路地区的UFP和CO的中值分别比具有城市背景的地区高1.8和1.2倍。在顺风条件下在多个近道路附近进行采样显示,随着距高速公路的距离的增加,UFP和CO的绝对浓度以及浓度衰减率存在显着差异。在低速蜿蜒的风中,区域UFP和CO浓度相对于侧风条件几乎翻倍;但是,近道路的UFP水平仍然比城市背景水平高1.2倍,而近道路的CO浓度与城市背景没有显着差异。

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    U.S. Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC 109 T.W. Alexander Drive, E343-02, Research Triangle Park, NC 27711;

    U.S. Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC;

    U.S. Environmental Protection Agency (EPA), Office of Research and Development, National Risk Management Research Laboratory, Research Triangle Park, NC EPA Office of Air and Radiation, Office of Transportation and Air Quality, National Vehicle and Fuel Emissions Laboratory, Ann Arbor, MI;

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