New mechanism for the participation of aromatic oxidation products in atmospheric nucleation

Huidi Zhang, Juanbao Wang, Biao Dong,Fei Xu,Houfeng Liu,Qingzhu Zhang, Wansong Zong,Xiangli Shi

SCIENCE OF THE TOTAL ENVIRONMENT(2024)

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摘要
Oxygenated organic molecules (OOMs) are recognized as important precursors for new particle formation (NPF) in the urban atmosphere. The paper theoretically studied the formation of OOMs by styrene oxidation processes initiated by OH radicals, focusing on the OOMs nucleation mechanism. The results found that in the presence of an H2SO4 molecule, lowly oxygenated organic molecules containing a benzene ring (LOMBs) can form stable clusters and grow to the scale of a critical nucleus through pi-pi stacking and O-H hydrogen bonding. In addition, LOMBs are more readily generated in a styrene -oxidized system in the presence/absence of NOx than highly oxygenated organic molecules (HOMs). The reaction of OH radicals with other aromatics containing a branched chain on the benzene ring produces LOMBs to varying degrees, with pi-pi stacking playing an essential role. This result suggests that, in the presence of H2SO4 molecules, LOMBs may play a more significant role in promoting nucleation than HOMs. Our findings serve as a pivotal foundation for future investigations into the oxidation and nucleation processes of diverse aromatics in urban environments.
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关键词
Styrene,New particle formation,Oxygenated organic molecules,Formation mechanism
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