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Chemical Closure Study on Hygroscopic Properties of Urban Aerosol Particles in Sapporo, Japan

机译:日本札幌城市气溶胶颗粒吸湿性的化学封闭研究

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摘要

To assess the link between hygroscopicity of atmospheric particles and the chemical composition, we performed a chemical closure study on the hygroscopicity of organic-inorganic mixed particles nebulized from water extracts of ambient aerosols collected in Sapporo, Japan during summer 2005. The hygroscopicity of 100 nm particles was measured using a hygroscopicity tandem differential mobility analyzer (HTDMA) at 5-95% relative humidity. The chemical analyses of the extracts showed that inorganic salts accounted for 32-84% of the water-soluble fraction and that the remaining was water-soluble organic matter (WSOM). The liquid water content (LWC) of particles was primarily governed by the relative abundance of inorganic salts in particles. The chemical closure with a thermodynamic model did not indicate a significant perturbation of LWC by WSOM at 85% RH with the consideration of the uncertainties estimated.
机译:为了评估大气颗粒的吸湿性与化学成分之间的联系,我们对2005年夏季在日本札幌采集的环境气溶胶水提取物雾化的有机-无机混合颗粒的吸湿性进行了化学封闭研究。100 nm的吸湿性使用吸湿性串联差动迁移率分析仪(HTDMA)在5-95%的相对湿度下测量颗粒。提取物的化学分析表明,无机盐占水溶性部分的32-84%,其余为水溶性有机物(WSOM)。颗粒的液态水含量(LWC)主要由颗粒中无机盐的相对丰度决定。考虑到所估计的不确定性,采用热力学模型的化学封闭并未表明WSOM在85%RH下对LWC产生了显着扰动。

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