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Impact of crop field burning and mountains on heavy haze in the North China Plain: a case study

机译:农作物燃烧与山区对北方沉重阴霾的影响 - 以案例研究

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摘要

With the provincial statistical data and crop field burning (CFB) activities captured by Moderate Resolution Imaging Spectroradiometer (MODIS), we extracted a detailed CFB emission inventory in the North China Plain (NCP). The WRF-CHEM model was applied to investigate the impact of CFB on air pollution during the period from 6 to 12 October 2014, corresponding to a heavy haze incident with high concentrations of PM2:5 (particulate matter with aerodynamic diameter less than 2.5 μm). The WRF-CHEM model generally performed well in simulating the surface species concentrations of PM_(2.5), O_3 and NO_2 compared to the observations; in addition, it reasonably reproduced the observed temporal variations of wind speed, wind direction and planetary boundary layer height (PBLH). It was found that the CFB that occurred in southern NCP (SNCP) had a significant effect on PM_(2.5) concentrations locally, causing a maximum of 34% PM_(2.5) increase. Under continuous southerly wind conditions, the CFB pollution plume went through a long-range transport to northern NCP (NNCP; with several mega cities, including Beijing, the capital city of China), where few CFBs occurred, resulting in a maximum of 32%PM_(2.5) increase. As a result, the heavy haze in Beijing was enhanced by the CFB, which occurred in SNCP. Mountains also play significant roles in enhancing the PM_(2.5) pollution in NNCP through the blocking effect. The mountains blocked and redirected the airflows, causing the pollutant accumulations along the foothills of mountains. This study suggests that the prohibition of CFB should be strict not only in or around Beijing, but also on the ulterior crop growth areas of SNCP. PM_(2.5) emissions in SNCP should be significantly limited in order to reduce the occurrences of heavy haze events in the NNCP region.
机译:随着省级统计数据和作物场燃烧(CFB)由中等分辨率成像分光镜(MODIS)捕获的活动,我们在华北平原(NCP)中提取了详细的CFB排放库存。 WRF-Chem模型用于研究CFB在2014年10月6日至12日期间空气污染的影响,对应于具有高浓度PM2:5(具有小于2.5μm的空气动力直径的颗粒物质)的重雾霾。与观察结果相比,在模拟PM_(2.5),O_3和NO_2的表面物种浓度时,WRF-CHEM-CHEM-CHEM-CHEME模型良好;另外,它合理地再现了观察到的风速,风向和行星边界层高度(PBLH)的时间变型。发现在南部NCP(SNCP)中发生的CFB对PM_(2.5)局部浓度的显着影响,导致最多34%的PM_(2.5)增加。在连续的南方风情条件下,CFB污染羽流经到了NCP北部的远程运输(NNCP;有几个大型城市,包括北京,中国的北京,其中很少发生CFB,最多可达32% PM_(2.5)增加。结果,北京的重度雾度被CFB增强,即在SNCP中发生。山区还通过阻塞效果来增强NNCP中的PM_(2.5)污染,发挥重要作用。山脉被阻挡并重定向了气流,导致沿着山麓的污染物积累。本研究表明,禁止CFB不仅是北京或周围的严格,而且应该是SNCP的别庄稼生长领域。 PM_(2.5)SNCP的排放应明显限制,以减少NNCP地区的重度雾霾事件的发生。

著录项

  • 来源
    《Atmospheric chemistry and physics》 |2016年第1期|共17页
  • 作者单位

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Lab of Aerosol Chemistry &

    Physics SKLLQG Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Center for Earth System Science Tsinghua University Beijing 100084 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

    crop field burning; mountains; North China Plain;

    机译:作物领域燃烧;山;华北平原;

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