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Characteristics of Aerosol Pollution Under Different Visibility Conditions in Winter in a Coastal Mega-City in China
作者姓名:杨红龙  张 勇  李 磊  陈柏玮  卢 超  张 丽
摘    要:To investigate chemical profiles and formation mechanisms of aerosol particles in winter haze events,comprehensive measurements including hourly concentrations of PM2.5 and water-soluble inorganic ions and related gasphase precursors were conducted via an online monitoring system from January to March of 2016 in Shenzhen, a coastal mega-city in south China. In this study, high concentrations of PM2.5, NO2 and lower levels of O3 were observed during haze periods in comparison with clear days(Visibility15 km). The major secondary ionic species were NH+4、NO-3 and SO2-4, which varied significantly on haze and clear days. The ratio of NO-3/SO2-4 in haze days was greater than that on clear days and tended to be larger when air pollution became more serious. At the same time, compared with previous studies, it has been found that the ratio has been increasing gradually in Shenzhen, indicating that the motor vehicle exhaust emissions have a more and more important impact on air quality in Shenzhen. Sulfur oxidation rate(SOR) and nitrogen oxidation rate(NOR) was higher during the haze period than that in clean days, indicating efficient gas to particle conversion. Further analysis shows that high concentrations of sulfate might be explained by aqueous oxidation,but gas-phase reactions might dominate nitrate formation. This study also highlights that wintertime nitrate formation can be an important contributor to aerosol particles, especially during haze periods.

关 键 词:air  quality    haze  day    Shenzhen    water-soluble  inorganic  ions
收稿时间:2019-10-12

Characteristics of Aerosol Pollution Under Different Visibility Conditions in Winter in a Coastal Mega-City in China
YANG Hong-long,ZHANG Yong,LI Lei,CHEN Pak-wai,LU Chao and ZHANG Li.Characteristics of Aerosol Pollution Under Different Visibility Conditions in Winter in a Coastal Mega-City in China[J].Journal of Tropical Meteorology,2020,26(2):231-238.
Authors:YANG Hong-long  ZHANG Yong  LI Lei  CHEN Pak-wai  LU Chao and ZHANG Li
Institution:1. Shenzhen National Climate Observatory, Meteorological Bureau of Shenzhen Municipality, Shenzhen 518040 China; 2. Meteorological Observation Center, China Meteorological Administration, Beijing 100081 China; 3. Hong Kong Observatory, Hong Kong 999077 China; 4. School of Atmospheric Sciences, Sun Yat-sen University, Zhuhai, Guangdong 519082 China
Abstract:To investigate chemical profiles and formation mechanisms of aerosol particles in winter haze events, comprehensive measurements including hourly concentrations of PM2.5 and water-soluble inorganic ions and related gas-phase precursors were conducted via an online monitoring system from Jan to Mar of 2016 in Shenzhen, a coastal mega-city in south China. In this study, high concentrations of PM2.5, NO2 and lower levels of O3 were observed during haze periods in comparison with clear days (Visibility>15km). The major secondary ionic species were NH_4^+, NO_3^- and SO_4^(2-), which varied significantly on haze and clear days. The ratio of NO_3^-/SO_4^(2-) in haze days was greater than that on clear days and tended to be larger when air pollution became more serious. At the same time, compared with the previous studies, it has been found that the ratio has been increasing gradually in Shenzhen, indicating that the motor vehicle exhaust emissions have a more and more important impact on air quality in Shenzhen. Sulfur oxidation rate(SOR) and nitrogen oxidation rate(NOR) was higher during the haze period than that in clean days, indicating efficient gas to particle conversion. Further analysis shows that high concentrations of sulfate might be explained by aqueous oxidation, but gas-phase reactions might dominate nitrate formation. This study also highlights that wintertime nitrate formation can be an important contributor to aerosol particles, especially during haze periods.
Keywords:air quality  haze day  Shenzhen  water-soluble inorganic ions
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