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Insights into submicron particulate evolution, sources and influences on haze pollution in Beijing, China

机译:了解中国北京亚微米颗粒的演变,来源及其对雾霾污染的影响

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摘要

The real-time continuous measurements of non-refractory submicron aerosol (NR-PM1) species including organics (Org), sulfate (SO42-), nitrate (NO3-), ammonium (NH4+) and chloride (Cl-) in winter from 10 December 2015 to 30 January 2016 in Beijing were performed with an Aerodyne Aerosol Chemical Speciation Monitor (ACSM). The average concentration of NR-PM, was 81.24 mu g m(-3), with the mean concentration in heavy haze days being 220.00 mu g m(-3), similar to 3 times higher than that in light haze days and similar to 15 times higher than that in clean days. Org was the most significant component of NR-PM1 species, accounting for 53% of the total NR-PM1 for the entire study. SO42- was also a significant component, accounting for 23% of the total NR-PM1. However, NO3-, NH4+ and Cl- composition together accounted for 25% of the total NR-PM1. All NR-PM1 species presented remarkably diurnal cycles in haze days, characterized by the highest concentrations occurring at midnight, and the lowest concentrations occurring at daytime. Note that the sulfur oxidation ratios were higher than the nitrogen oxidation ratios for the entire study, especially during the haze periods. The formation of sulfate was mainly affected by relative humidity (RH), while that of nitrate was more associated with NH3. Heterogeneous oxidation of NO(2)on the surfaces of aerosol particles might be a significant pathway of nitrate formations during haze periods. NR-PM1 was mainly from secondary chemical reactions contributing 46.1%, vehicle emissions contributing 22.3%, coal combustion contributing 16.1%, and biomass burning contributing 15.6% in clean days. However, compared to the clean-day source contributions, the haze-day secondary source contribution to NR-PM1 increased to 66.8%, indicating that NR-PM1 in haze days was dramatically dominated by the secondary pollutants.
机译:冬季从10开始实时连续测量非难熔亚微米气溶胶(NR-PM1)物种,包括有机物(Org),硫酸盐(SO42-),硝酸盐(NO3-),铵(NH4 +)和氯化物(Cl-) 2015年12月至2016年1月30日在北京进行了Aerodyne气溶胶化学形态监测仪(ACSM)。 NR-PM的平均浓度为81.24 mu gm(-3),重雾天的平均浓度为220.00 mu gm(-3),比轻雾天的平均浓度高3倍,约15倍高于晴天。组织是NR-PM1物种中最重要的组成部分,占整个研究中总NR-PM1的53%。 SO42-也是重要组成部分,占NR-PM1总量的23%。但是,NO3-,NH4 +和Cl-的成分合计占NR-PM1总量的25%。所有NR-PM1物种在阴霾天均表现出明显的昼夜周期,其特征是最高浓度出现在午夜,最低浓度出现在白天。注意,在整个研究中,硫的氧化率高于氮的氧化率,尤其是在雾霾时期。硫酸盐的形成主要受相对湿度(RH)的影响,而硝酸盐的形成与NH3的关系更大。 NO(2)在气雾剂颗粒表面的异质氧化可能是雾霾时期硝酸盐形成的重要途径。 NR-PM1主要来自于清洁日的二次化学反应,占46.1%,车辆排放占22.3%,煤炭燃烧占16.1%,生物质燃烧占15.6%。但是,与清洁日源贡献相比,雾天NR-PM1的次要源贡献增加到66.8%,这表明雾霾天中NR-PM1的主要污染物是次要污染物。

著录项

  • 来源
    《Atmospheric environment》 |2019年第3期|360-368|共9页
  • 作者单位

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

    Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Beijing Reg Air Pollut Control, Beijing 100124, Peoples R China;

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

    NR-PM1; Mass concentration; Diurnal cycle; Haze; Influencing factors; Source contribution;

    机译:NR-PM1;浓度;昼夜周期;霾;影响因素;源贡献;

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