气溶胶
粒子(生态学)
云凝聚核
冷凝
相(物质)
微粒
大气(单位)
粒径
化学
化学物理
化学工程
材料科学
气象学
有机化学
物理化学
地质学
海洋学
物理
工程类
作者
Weijun Li,Lei Liu,Jian Zhang,Liang Xu,Yuanyuan Wang,Yele Sun,Zongbo Shi
标识
DOI:10.1021/acs.est.0c02333
摘要
Phase separation is an important microscopic phenomenon in aerosol particles and reflects the surface properties of particles and the aging degree of organic components. However, few data are available to directly reveal phase separation in ambient aerosol particles, although there are abundant data from laboratory experiments. In this study, different state-of-the-art microscopic technologies were used to study the phase separation of organic matter (OM) and inorganic salts in individual particles collected from different atmospheric environments, with one type of surrogate particles prepared in the laboratory. We found that most of the collected particles with an equivalent sphere diameter of >100 nm have a secondary inorganic aerosol core with OM coating in the continental atmosphere. In addition, secondary inorganic aerosol and OM phase separation are more frequent in rural particles than suburban particles, suggesting that particle aging enhances the phase separation. Our results show that the phase separation is a frequent phenomenon that forms organic coatings on inorganic particles of individual particles (>100 nm), and their number abundances depend on the particle size and OM aging degree. The resulting morphology shows that OM is an important particle surface in the atmosphere, which influences gas partitioning, optical and hygroscopic properties, and cloud condensation nuclei formation activities.
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