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首页> 外文期刊>Science of the total environment >Impact of aerosol liquid water content and its size distribution on hygroscopic growth factor in urban Guangzhou of South China
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Impact of aerosol liquid water content and its size distribution on hygroscopic growth factor in urban Guangzhou of South China

机译:气溶胶液含水量的影响及其大小分布对华南城市城市湿润生长因子的影响

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摘要

To investigate the dependence of hygroscopic growth factor (f(RH)) on aerosol liquid water content (ALWC) and its size distribution, a comprehensive campaign was carried out in urban Guangzhou in autumn 2015. Major chemical components in bulk as well as size-segregated PM_(2.5) samples, bulk PM_(10) mass, aerosol scattering coefficient (b_(sp)) under dry and wet conditions, inline water-soluble inorganic ions (WSIIs) and meteorological parameters were synchronously measured. Mass fractions of hydrophilic chemical composition (e.g. SO_4~(2-), NO_3~-and NH_4~+) in PM_(2.5) and their mass median aerodynamic diameters (MMADs) were evidently larger under conditions of ambient relative humidity (RH) >60% than RH <60%. The estimated f(RH) by the revised IMPROVE formula and the Mie model based on filter-collected WSIIs concentrations was higher than and close to the measured ones, respectively, when RH < 60%, but was evidently lower than the measured ones when RH > 60%. A good linear correlation was found between the measured f(RH) and mass ratio of ALWC to PM_(2.5) when using the inline WSIIs concentrations, suggesting a strong dependence of f(RH) on the mass fraction of ALWC in PM_(2.5).
机译:探讨吸湿生长因子(F(RH))对气溶胶液体含水量(ALWC)及其规模分布的依赖性,2015年秋季的广州在广州进行了综合运动。散装的主要化学成分以及尺寸 - 分离PM_(2.5)样品,大量PM_(10)质量,气溶胶散射系数(B_(SP))在干燥和湿润条件下,内联水溶性无机离子(WSIIS)和气象参数进行同步测量。在PM_(2.5)中的亲水化学组合物的质量级分(例如SO_4〜(2-),NO_3〜-NOH_4〜+)在环境相对湿度(RH)的条件下显着较大,在其质量中间中值空气动力学直径(MMADS)中显着较大。 60%比RH <60%。当RH <60%时,修正的改进公式和基于过滤器收集的WSIIS浓度的MIE模型的估计的F(RH)分别高于测量的F(RH),但是当RH时显然低于测量的WHS > 60%。在使用内联WSIIS浓度的情况下,在alwc到pm_(2.5)的测量的f(rh)和质量比之间发现了良好的线性相关性,表明F(RH)对PM_(2.5)的alwc质量分数的强烈依赖性。

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  • 来源
    《Science of the total environment》 |2021年第1期|148055.1-148055.9|共9页
  • 作者单位

    Institute for Environmental and Climate Research Jinan University Guangzhou China South China Institute of Environmental Sciences Ministry of Ecology and Environmental Guangzhou China Guangdong Provincial Observation and Research Station for Climate Environment and Air Quality Change in the Pearl River Estuary Guangzhou China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environmental Guangzhou China Guangdong Provincial Observation and Research Station for Climate Environment and Air Quality Change in the Pearl River Estuary Guangzhou China;

    Air Quality Research Division Science and Technology Branch Environment and Climate Change Canada Toronto Canada;

    Key Laboratory of Middle Atmosphere and Global Environment Observation Institute of Atmospheric Physics Chinese Academy of Sciences Beijing China;

    South China Institute of Environmental Sciences Ministry of Ecology and Environmental Guangzhou China Guangdong Provincial Observation and Research Station for Climate Environment and Air Quality Change in the Pearl River Estuary Guangzhou China;

    Institute for Environmental and Climate Research Jinan University Guangzhou China;

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

    Atmospheric aerosols; Hydrophilic chemical composition; Particle size distribution; Mass scattering efficiency; Empirical model validation;

    机译:大气气溶胶;亲水化学成分;粒度分布;质量散射效率;实证模型验证;

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