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Air stagnation and its impact on air quality during winter in Sichuan and Chongqing, southwestern China

机译:西南四川和重庆的冬季空气停滞及其对空气质量的影响

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摘要

The Sichuan and Chongqing regions suffer from severe haze weather in winter due to the unfavourable atmospheric diffusion conditions. Reanalysis and precipitation datasets were applied in this study to calculate and distinguish air stagnation events using a developed criterion, and the impacts of the occurrence of air stagnation events on air quality were analysed in combination with the PM2.5concentration data for the winters of 2013–2016. The highest occurrence frequency of air stagnation events was observed in 2013, and the lowest, 2015. The meteorological conditions during winter in the Sichuan Basin were inclined to form unfavourable atmospheric diffusion conditions, and the occurrence frequency of air stagnation days was up to 76.6% on average during the four winters. The effects of air stagnation events on air quality were most obvious in the western and southern Sichuan Basin. The mean concentrations of PM2.5during air stagnation days were higher by 41.9% than those during non-air stagnation days. The PM2.5concentrations were adjusted using the favourable atmospheric diffusion conditions in 2015 as a baseline to quantify the PM2.5contribution to the improvement of air quality in the other years, which revealed that the level of PM2.5in the Sichuan and Chongqing regions was declining at a rate of approximately 10.7% overall during the winters of 2013–2016, implying that the air pollutant reduction measures have been highly effective. Furthermore, the occurrence frequency of air stagnation days and events were increased in recent ten years of 2007–2016, with linear slopes of 0.61yr−1and 0.26yr−1, respectively. The study revealed that the government might face a greater challenge in improving the air quality over winter and should pay more attention to reduction of pollutant emission in areas of Chengdu, Chongqing and cities in the south of the Sichuan Basin.
机译:由于不利的大气扩散条件,四川和重庆地区冬季严寒。在这项研究中,使用了重新分析和降水数据集来使用已开发的标准来计算和区分空气停滞事件,并结合2013年冬季的PM2.5浓度数据分析了空气停滞事件的发生对空气质量的影响。 2016年。空气停滞事件的发生频率最高的是2013年,最低的是2015年。四川盆地冬季的气象条件倾向于形成不利的大气扩散条件,空气停滞天数的发生频率高达76.6%。平均在四个冬天。停滞事件对空气质量的影响在四川盆地的西部和南部最为明显。空气停滞期间的PM2.5平均浓度比非空气停滞期间的平均浓度高41.9%。以2015年有利的大气扩散条件为基准对PM2.5浓度进行了调整,以量化PM2.5在其他年份对改善空气质量的贡献,这表明四川和重庆地区的PM2.5含量正在下降在2013-2016年冬季,总体上大约为10.7%,这意味着减少空气污染物的措施非常有效。此外,在2007–2016的最近十年中,空气停滞天和事件的发生频率增加,线性斜率分别为0.61yr-1和0.26yr-1。研究表明,政府可能在冬季改善空气质量方面面临更大的挑战,应更多地关注减少成都,重庆和四川盆地南部城市的污染物排放。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第1期|576-585|共10页
  • 作者单位

    Plateau Atmospheric and Environment Key Laboratory of Sichuan Province, College of Atmosphere Sciences, Chengdu University of Information Technology;

    Key Laboratory for Atmospheric Chemistry, Chinese Academy of Meteorological Sciences, CMA;

    Plateau Atmospheric and Environment Key Laboratory of Sichuan Province, College of Atmosphere Sciences, Chengdu University of Information Technology;

    Plateau Atmospheric and Environment Key Laboratory of Sichuan Province, College of Atmosphere Sciences, Chengdu University of Information Technology;

    Plateau Atmospheric and Environment Key Laboratory of Sichuan Province, College of Atmosphere Sciences, Chengdu University of Information Technology;

    Chinese Antarctic Center of Surveying and Mapping, Wuhan University;

    Key Laboratory for Atmospheric Chemistry, Chinese Academy of Meteorological Sciences, CMA;

    Key Laboratory for Atmospheric Chemistry, Chinese Academy of Meteorological Sciences, CMA;

    Huainan Academy of Atmospheric Sciences, Institute of Atmospheric Physics, Chinese Academy of Science;

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

    Sichuan Basin; Air stagnation events; PM2.5; Winter;

    机译:四川盆地;空气停滞事件;PM2.5;冬季;

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