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2-甲基四醇硫酸酯气溶胶的非均相羟基自由基氧化形成无机硫酸盐和挥发性非硫酸化产物:机理及大气意义

Formation of Inorganic Sulfate and Volatile Nonsulfated Products from Heterogeneous Hydroxyl Radical Oxidation of 2-Methyltetrol Sulfate Aerosols: Mechanisms and Atmospheric Implications.

作者信息

Xu Rongshuang, Chen Yuzhi, Ng Sze In Madeleine, Zhang Zhenfa, Gold Avram, Turpin Barbara J, Ault Andrew P, Surratt Jason D, Chan Man Nin

机构信息

School of Ecology and Applied Meteorology, Nanjing University of Information Science & Technology, Nanjing 210044, China.

Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, The University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, United States.

出版信息

Environ Sci Technol Lett. 2024 Aug 7;11(9):968-974. doi: 10.1021/acs.estlett.4c00451. eCollection 2024 Sep 10.

Abstract

Chemical transformation of 2-methyltetrol sulfates (2-MTS), key isoprene-derived secondary organic aerosol (SOA) constituents, through heterogeneous hydroxyl radical (OH) oxidation can result in the formation of previously unidentified atmospheric organosulfates (OSs). However, detected OSs cannot fully account for the sulfur content released from reacted 2-MTS, indicating the existence of sulfur in forms other than OSs such as inorganic sulfates. This work investigated the formation of inorganic sulfates through heterogeneous OH oxidation of 2-MTS aerosols. Remarkably, high yields of inorganic sulfates, defined as the moles of inorganic sulfates produced per mole of reacted 2-MTS, were observed in the range from 0.48 ± 0.07 to 0.68 ± 0.07. These could be explained by the production of sulfate (SO ) and sulfite (SO ) radicals through the cleavage of C-O(S) and (C)O-S bonds, followed by aerosol-phase reactions. Additionally, nonsulfated products resulting from bond cleavage were likely volatile and evaporated into the gas phase, as evidenced by the observed aerosol mass loss (≤25%) and concurrent size reduction upon oxidation. This investigation highlights the significant transformation of sulfur from its organic to inorganic forms during the heterogeneous oxidation of 2-MTS aerosols, potentially influencing the physicochemical properties and environmental impacts of isoprene-derived SOAs.

摘要

2-甲基四醇硫酸盐(2-MTS)是异戊二烯衍生的关键二次有机气溶胶(SOA)成分,其通过非均相羟基自由基(OH)氧化的化学转化可导致形成先前未鉴定的大气有机硫酸盐(OSs)。然而,检测到的OSs并不能完全解释反应后的2-MTS释放出的硫含量,这表明存在除OSs之外的其他硫形态,如无机硫酸盐。这项工作研究了2-MTS气溶胶通过非均相OH氧化形成无机硫酸盐的过程。值得注意的是,观察到无机硫酸盐的高产率,定义为每摩尔反应的2-MTS产生的无机硫酸盐的摩尔数,范围在0.48±0.07至0.68±0.07之间。这可以通过C-O(S)和(C)O-S键的断裂产生硫酸根(SO )和亚硫酸根(SO )自由基,随后发生气溶胶原相反应来解释。此外,键断裂产生的未硫酸化产物可能是挥发性的,并蒸发到气相中,氧化时观察到的气溶胶质量损失(≤25%)和同时的粒径减小证明了这一点。这项研究突出了2-MTS气溶胶非均相氧化过程中硫从有机形态到无机形态的显著转化,这可能会影响异戊二烯衍生的SOAs的物理化学性质和环境影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77ab/11391575/9afa072fa37b/ez4c00451_0001.jpg

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