42 / 2023-03-06 10:38:15
华北华中冬季亚微米粒子化学组成、来源及区域内输运
PM1,chemical composition,source apportionment,Regional joint prevention and control
摘要录用
胡尧 / 中国地质大学(武汉)
孔少飞 / 中国地质大学(武汉)
Regional submicron particles (PM1) compositions, sources and interaction are still not clear as the desynchrony in observation. This study focused on PM1 at five sites synchronously in North China Plain (NCP) and Central China (CC) during January 2018. The average PM1 mass concentrations decreased from north to south, with higher values in LH (125 ± 59.4 µg m−3), followed by borderline cities (54.1−93.3 µg m−3) and a south site of WH (63.6 ± 21.5 µg m−3). Organic matter (41.8%−51.0%) and secondary inorganic aerosols (28.2%−33.2%) occupied the high fractions for all the five sites. Coal combustion and industrial processes mainly raised the differences in PM1 chemical compositions between regions. The changes of NO3−/SO42− between sites were different as a function of relatively humidity and temperature, reflecting the differences of secondary formation mechanism. For a short intra-regional transport case from south to north, PM1 increased from 102 to 185 µg m−3 as the accumulation and aerosol-planet boundary layer interaction under a stable meteorological condition. For a long-range transport case from north to south with a high wind speed (5.5 m s−1) and boundary layer height (529 m), PM1 decreased by only 0.9 µg m−3 (−1.3%) as the enhanced formation of SIA by 12.6% under increased relative humidity (by 7.2%) and enhanced industrial emission (by 19.1%) at the south site. The results provide a useful dataset for modeling PM1 chemical compositions and their impacts and are helpful for regional-joint control of atmospheric particles and precursor gases.
重要日期
  • 会议日期

    05月15日

    2023

    05月17日

    2023

  • 05月10日 2023

    初稿截稿日期

  • 05月31日 2023

    报告提交截止日期

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