首页> 外文期刊>Aerosol and Air Quality Research >Particle Liquid Water Content and Aerosol Acidity Acting as Indicators of Aerosol Activation Changes in Cloud Condensation Nuclei (CCN) during Pollution Eruption in Guangzhou of South China
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Particle Liquid Water Content and Aerosol Acidity Acting as Indicators of Aerosol Activation Changes in Cloud Condensation Nuclei (CCN) during Pollution Eruption in Guangzhou of South China

机译:华南广州市污染爆发过程中颗粒状液态水含量和气溶胶酸度是云凝结核(CCN)气溶胶活化变化的指标

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Atmospheric pollution has been found to modify the hygroscopicity of particles and the ability of aerosols to become cloud condensation nuclei (CCN). Aerosols and the bulk CCN were measured in urban Guangzhou during pollution periods in January 2016, and the particle liquid water content (PLWC) and aerosol acidity (Aero-pH) were calculated to examine their possible effects on aerosols’ CCN activation. The results demonstrate that the PLWC and Aero-pH likely play key roles in enhancing aerosol activation during the early stages of pollution episodes. The analysis of the calculated and the observed data shows that CCN, PLWC, Aero-pH and water-soluble inorganic matter (WSIM) are closely linked to each other, particularly at night, and Aero-pH and PLWC act as pre-occurring indicators of activated aerosols and aerosol activity, respectively, during the rapid onset of pollution. In theory, the feedback between chemical reactions, aerosol acidity and particle water content accounts for the changes in aerosol activation accompanying particle accumulation and aging. Our research provides insights into the swift formation of particle pollution characterized by secondary aerosols and suggests a possible approach to tracking or characterizing its effects on the activation of aerosols into CCN without requiring CCN or aerosol number measurements.
机译:已发现大气污染会改变颗粒的吸湿性和气溶胶变成云凝结核(CCN)的能力。在2016年1月的污染时期,对广州市区的气溶胶和大体积CCN进行了测量,并计算了颗粒液体含水量(PLWC)和气溶胶酸度(Aero-pH),以检查它们对气溶胶CCN活化的可能影响。结果表明,PLWC和Aero-pH可能在污染发作早期阶段在增强气溶胶活化中起关键作用。对计算得出的数据和观察到的数据的分析表明,CCN,PLWC,Aero-pH和水溶性无机物(WSIM)彼此紧密相连,尤其是在晚上,而Aero-pH和PLWC则是预先出现的指标污染迅速发作期间活性气溶胶和气溶胶活性的变化。从理论上讲,化学反应,气溶胶酸度和颗粒水含量之间的反馈解释了伴随颗粒积累和老化而发生的气溶胶活化变化。我们的研究提供了以次级气溶胶为特征的颗粒物污染迅速形成的见解,并提出了一种可能的方法来跟踪或表征其对气溶胶活化成CCN的影响,而无需测量CCN或气溶胶数量。

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