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Chemical composition and sources of submicron aerosols in winter at a regional site in Beijing-Tianjin-Hebei region: Implications for the Joint Action Plan

机译:京津冀地区某地区冬季亚微米气溶胶的化学成分和来源:对联合行动计划的启示

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摘要

The Ministry of Environmental Protection released a Joint Action Plan for Control of Air Pollution (Hereafter, Joint Action Plan, JAP), to reduce PM2.5 concentrations in the Beijing-Tianjin-Hebei region (BTH) during the winter of 2017. To investigate the effectiveness of the controls, we deployed an aerosol chemical speciation monitor and collected filter samples at Xianghe, a representative site for the BTH, to characterize the aerosol composition during the implementation of the JAP. Those results were compared with earlier data obtained from a literature survey and reanalysis of studies in the BTH. During several pollution episodes in the control period, the major aerosol types changed relative to the earlier studies from sulfate, oxygenated organic aerosol, and coal combustion organic aerosol to nitrate and biomass burning organic aerosol. The dominant secondary inorganic aerosol species during the JAP changed from sulfate to nitrate, and the main source for primary organic aerosol switched from coal combustion to biomass burning. These changes can be explained by the fact that the JAP controls targeted coal combustion and SO_2 but not biomass burning or NO_x emissions. Our evaluation of the control measures provides a scientific basis for developing new policies in the future.
机译:环境保护部发布了一项《控制空气污染的联合行动计划》(以下简称《联合行动计划》,简称JAP),以在2017年冬季降低北京-天津-河北地区(BTH)的PM2.5浓度。由于控制的有效性,我们部署了气溶胶化学形态监测器,并在BTH的代表点香河市收集了过滤器样品,以表征实施JAP期间的气溶胶成分。将这些结果与从文献调查和BTH研究的重新分析中获得的早期数据进行了比较。在控制期内的几次污染事件中,相对于早期的研究,主要的气溶胶类型从硫酸盐,氧化的有机气溶胶和燃煤的有机气溶胶变为硝酸盐和燃烧生物质的有机气溶胶。日本联合行动期间,主要的次要无机气溶胶种类从硫酸盐变为硝酸盐,主要有机气溶胶的主要来源从燃煤转向了生物质燃烧。 JAP控制目标煤燃烧和SO_2,但不控制生物质燃烧或NO_x排放,这一事实可以解释这些变化。我们对控制措施的评估为将来制定新政策提供了科学依据。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|137547.1-137547.9|共9页
  • 作者单位

    School of Humanities Economics and Law Northwestern Polytechnical University Xi'an 710129 China Key Laboratory of Aerosol Chemistry and Physics State Key Laboratory of Loess and Quaternary Geology Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Key Laboratory of Aerosol Chemistry and Physics State Key Laboratory of Loess and Quaternary Geology Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China CAS Center for Excellence in Quaternary Science and Global Change Xi'an 710061 China;

    School of Engineering and Applied Sciences Harvard University Cambridge MA 02138 USA;

    Key Laboratory of Aerosol Chemistry and Physics State Key Laboratory of Loess and Quaternary Geology Institute of Earth Environment Chinese Academy of Sciences Xi'an 710061 China;

    Graduate School of Global Environmental Studies Kyoto University Kyoto 6068501 Japan;

    Key Laboratory of Regional Climate-Environment Research for Temperate East Asia Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 China Xianghe Observatory of Whole Atmosphere Institute of Atmospheric Physics Chinese Academy of Sciences Xianghe County Hebei Province 065400 China;

    Key Laboratory of Regional Climate-Environment Research for Temperate East Asia Institute of Atmospheric Physics Chinese Academy of Sciences Beijing 100029 China;

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

    Joint Action Plan; Winter; Beijing-Tianjin-Hebei; Aerosol composition; Organic sources;

    机译:联合行动计划;冬季;京津冀;气溶胶成分;有机来源;
  • 入库时间 2022-08-18 05:27:53

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