化工学报 ›› 2019, Vol. 70 ›› Issue (7): 2691-2698.DOI: 10.11949/0438-1157.20181222

• 能源和环境工程 • 上一篇    下一篇

利用κ-Köhler理论研究大气气溶胶的吸湿特性

王昱焜(),张现仁(),曹达鹏   

  1. 北京化工大学有机无机复合材料国家重点实验室,北京 100029
  • 收稿日期:2018-10-17 修回日期:2019-04-11 出版日期:2019-07-05 发布日期:2019-07-05
  • 通讯作者: 张现仁
  • 作者简介:王昱焜(1993—),男,硕士研究生,<email>wyk1211@qq.com</email>
  • 基金资助:
    国家自然科学基金项目(91434204)

Study on hygroscopic properties of atmospheric aerosols using κ-Köhler theory

Yukun WANG(),Xianren ZHANG(),Dapeng CAO   

  1. State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China
  • Received:2018-10-17 Revised:2019-04-11 Online:2019-07-05 Published:2019-07-05
  • Contact: Xianren ZHANG

摘要:

利用κ-K?hler理论对西安、北京两地大气气溶胶体系的吸湿特性进行研究。选取多种代表性无机物(硫酸盐、硝酸盐、氯盐)及有机物(烯烃、芳香烃、羧酸)建立气溶胶体系模型,使研究体系更接近于真实大气成分。结果表明,在空气质量由清洁状态向雾霾发生状态转变的过程中,两种体系中均呈现有机物含量逐渐减少而(NH4)2SO4和NH4NO3含量逐渐增多的趋势,这种变化趋势总是促使气溶胶体系整体吸湿能力增强,因此更易吸湿增长形成雾霾。对体系中不同组分对吸湿性的影响进行了定量预测,理论预测的变动趋势与实际观测的变动趋势相同,揭示了雾霾形成过程中各组分的变动趋势及影响程度,为针对性解决雾霾问题提供思路。

关键词: 环境, 污染, 气溶胶, 吸湿性, κ-K?hler理论

Abstract:

The κ-K?hler theory was used to study the hygroscopic properties of atmospheric aerosol systems in Xi an and Beijing. The aerosol model was established by choosing several typical inorganic (sulfate, nitrate, chloride) and organic components (cycloene, aromatic hydrocarbon, carboxylic acid) to mimic to the real complex atmospheric composition. The results show that, when air quality changes from clean state to polluted state, the content of organic components gradually decreases whereas the concentration of (NH4)2SO4 and NH4NO3 gradually increases in both systems. This trend always promotes the overall hygroscopicity of the aerosol systems, which in turn enhances the adsorption of moisture and thus the formation of haze. The influence of different components on the hygroscopicity of the whole system was also quantitatively predicted. The trend of variation was revealed by the theory and the theoretical prediction was in a good agreement with that observed in practice.

Key words: environment, pollution, aerosol, hygroscopicity, κ-K?hler theory

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