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Topographic and spatial impacts of temperature inversions on air quality using mobile air pollution surveys

机译:使用移动空气污染调查的温度反演对空气质量的地形和空间影响

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摘要

We investigated the spatial and topographic effects of temperature inversions on air quality in the industrial city of Hamilton, located at the western tip of Lake Ontario, Canada. The city is divided by a 90-m high topographic scarp, the Niagara Escarpment, and dissected by valleys which open towards Lake Ontario. Temperature inversions occur frequently in the cooler seasons, exacerbating the impact of emissions from industry and traffic. This study used pollution data gathered from mobile monitoring surveys conducted over a 3-year period, to investigate whether the effects of the inversions varied across the city. Temperature inversions were identified with vertical temperature data from a meteorological tower located within the study area. We divided the study area into an upper and lower zone separated by the Escarpment and further into six zones, based on location with respect to the Escarpment and industrial and residential areas, to explore variations across the city. The results identified clear differences in the responses of nitrogen dioxide (NO_2) and fine particulate matter (PM2.5) to temperature inversions, based on the topographic and spatial criteria. We found that pollution levels increased as the inversion strengthened, in the lower city. However, the results also suggested that temperature inversions identified in the lower city were not necessarily experienced in the upper city with the same intensity. Further, pollution levels in the upper city appeared to decrease as the inversion deepened in the lower city, probably because of an associated change in prevailing wind direction and lower wind speeds, leading to decreased long-range transport of pollutants.
机译:我们调查了位于加拿大安大略湖西端的工业城市汉密尔顿的温度反演对空气质量的空间和地形影响。这座城市被90米高的地形陡坡尼亚加拉悬崖所分割,并被通往安大略湖的山谷所分割。在较冷的季节经常发生温度反转,加剧了来自工业和交通排放的影响。这项研究使用了为期3年的移动监测调查收集的污染数据,以调查整个城市反演的影响是否不同。利用位于研究区域内的气象塔的垂直温度数据识别温度反转。我们将研究区域划分为由悬崖相连的上,下区域,并根据与悬崖以及工业和居民区相对的位置,进一步分为六个区域,以探索整个城市的变化。结果根据地形和空间标准,确定了二氧化氮(NO_2)和细颗粒物(PM2.5)对温度反演的响应存在明显差异。我们发现,较低城市的污染水平随着反演的加强而增加。但是,结果还表明,较低城市中识别出的温度反转不一定在强度相同的较高城市中经历。此外,随着低层城市反演的加深,高层城市的污染水平似乎有所降低,这可能是由于主要风向和较低风速的相关变化,从而导致污染物的远程运输减少。

著录项

  • 来源
    《Science of the total environment》 |2010年第21期|p.5086-5096|共11页
  • 作者单位

    Centre for Spatial Analysis, School of Geography and Earth Sciences, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L8, Canada;

    rnDepartment of Engineering Physics, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L8. Canada Rotek Environmental Inc. 43 Keefer Court, Unit 104, Hamilton, Ontario, Canada;

    rnCentre for Spatial Analysis, School of Geography and Earth Sciences, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4L8, Canada;

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

    mobile monitoring; temperature inversions; air quality; topography;

    机译:移动监控;温度反转空气质量;地形;
  • 入库时间 2022-08-17 13:56:23

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