中国南方山区云团过程中多相氧化驱动的二次有机气溶胶形成的原位观测

IF 8.8 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Min Gao, Shengzhen Zhou*, Yao He, Guohua Zhang, Nan Ma, Yao Li, Fenghua Li, Yuxiang Yang, Long Peng, Jun Zhao*, Xinhui Bi, Weiwei Hu, Yele Sun, Boguang Wang and Xuemei Wang, 
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引用次数: 0

摘要

二次有机气溶胶(SOAs)占大气细颗粒物的很大一部分,但其形成和演化过程的机制尚不清楚。在这项研究中,利用地面逆流虚拟冲击器与在线飞行时间气溶胶化学形态监测仪相结合,研究了中国南方山区云事件期间多相(气相和水相)氧化过程和SOA影响因素。结果表明,这些云促进了低氧化氧化有机气溶胶(LO-OOA)和高氧化氧化有机气溶胶(MO-OOA)的形成。在夜间,臭氧(O3)和硝酸盐自由基(NO3•)将挥发性有机物(VOCs,主要是生物源性VOCs)氧化为LO-OOA的前体,并被云滴吸收形成LO-OOA,而在白天,羟基自由基(•OH)是LO-OOA的主要氧化剂。在云滴中,LO-OOA进一步被•OH氧化生成MO-OOA。我们提出异戊二烯可以在气相氧化形成产物,然后被酸性云滴吸收形成2-甲基甘油(2-MG), 2-MG有机硫酸盐和2-MG有机硝酸酯。这项研究提高了我们对SOA形成的理解,它是由云事件期间的多相氧化驱动的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In Situ Observation of Multiphase Oxidation-Driven Secondary Organic Aerosol Formation during Cloud Processing at a Mountain Site in Southern China

In Situ Observation of Multiphase Oxidation-Driven Secondary Organic Aerosol Formation during Cloud Processing at a Mountain Site in Southern China

Secondary organic aerosols (SOAs) account for a large fraction of atmospheric fine particles, but the mechanisms of their formation and evolution processes remain unclear. In this study, a ground-based counterflow virtual impactor was used in combination with an online time-of-flight aerosol chemical speciation monitor to investigate the multiphase (gaseous and aqueous) oxidation processes and the SOA influencing factors during cloud events at a mountain site in southern China. Our results showed that the clouds promoted the formation of low-oxidized oxygenated organic aerosol (LO-OOA) and more-oxidized oxygenated organic aerosol (MO-OOA). At night, ozone (O3) and nitrate radicals (NO3•) oxidized volatile organic compounds (VOCs, mostly biogenic VOCs) to the precursors of LO-OOA and were absorbed in the cloud droplets to form LO-OOA, while the hydroxyl radical (•OH) was the main oxidant for LO-OOA during daytime. In the cloud droplets, LO-OOA was further oxidized by •OH to form MO-OOA. We propose that isoprene can be oxidized to form products in the gas phase and then absorbed by acidic cloud droplets to form 2-methylglyceric acid (2-MG), 2-MG-organosulfate, and 2-MG-organonitrate. This study improves our understanding of SOA formation, driven by multiphase oxidation during cloud events.

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来源期刊
Environmental Science & Technology Letters Environ.
Environmental Science & Technology Letters Environ. ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
17.90
自引率
3.70%
发文量
163
期刊介绍: Environmental Science & Technology Letters serves as an international forum for brief communications on experimental or theoretical results of exceptional timeliness in all aspects of environmental science, both pure and applied. Published as soon as accepted, these communications are summarized in monthly issues. Additionally, the journal features short reviews on emerging topics in environmental science and technology.
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