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柠檬烯二次有机气溶胶在水相中的氧化动力学。

Kinetics of Limonene Secondary Organic Aerosol Oxidation in the Aqueous Phase.

机构信息

University of Warsaw , Faculty of Chemistry , Al. Żwirki i Wigury 101 , 02-089 Warsaw , Poland.

出版信息

Environ Sci Technol. 2018 Oct 16;52(20):11583-11590. doi: 10.1021/acs.est.8b02516. Epub 2018 Sep 26.

Abstract

Twenty semivolatile organic compounds that contribute to limonene secondary organic aerosol (SOA) were synthesized in the flow-tube reactor. Kinetics of the aqueous-phase oxidation of the synthesized compounds by hydroxyl radicals (OH) and ozone (O) were investigated at 298 ± 2 K using the relative rate method. Oxidized organic compounds identified as the major components of limonene SOA were quantified with liquid chromatography coupled to the electrospray ionization and quadrupole tandem mass spectrometry (LC-ESI/MS/MS). The bimolecular rate coefficients measured for the oxidation products of limonene are k = 2-5 × 10 M s for saturated and k = 1-2 × 10 M s for unsaturated compounds. Ozonolysis reaction bimolecular rate coefficients obtained for the unsaturated compounds in the aqueous phase are between 2 and 6 × 10 M s. The results obtained in this work also indicate that oxidation of limonene carboxylic acids by OH was about a factor of 2 slower for the carboxylate ions than for the protonated acids while the opposite was true for the ozonolysis. The data acquired provided new insights into kinetics of the limonene SOA processing in the aqueous phase. Ozonolysis of limonene SOA also increased the concentration of dimers, most likely due to reactions of the stabilized Criegee intermediates with the other, stable products. These results indicate that aqueous-phase oxidation of limonene SOA by OH and O will be relevant in clouds, fogs, and wet aerosols.

摘要

在流动管反应器中合成了 20 种对半挥发性有机化合物,这些化合物有助于形成柠檬烯二次有机气溶胶(SOA)。采用相对速率法,在 298±2 K 下研究了羟基自由基(OH)和臭氧(O)在水相中对合成化合物的氧化动力学。采用液相色谱-电喷雾电离-四极串联质谱联用(LC-ESI/MS/MS)技术,对作为柠檬烯 SOA 主要成分的氧化有机化合物进行了定量分析。测定的柠檬烯氧化产物的双分子速率系数为饱和化合物 k = 2-5×10 M s,不饱和化合物 k = 1-2×10 M s。在水相中,不饱和化合物的臭氧分解双分子速率系数在 2 到 6×10 M s 之间。本工作的结果还表明,OH 对柠檬烯羧酸的氧化作用对于羧酸根离子来说比对于质子化酸要慢约 2 倍,而臭氧分解则相反。所获得的数据为研究水中柠檬烯 SOA 的动力学过程提供了新的见解。柠檬烯 SOA 的臭氧分解也增加了二聚体的浓度,这很可能是由于稳定的 Criegee 中间体与其他稳定产物的反应所致。这些结果表明,OH 和 O 在云、雾和湿气溶胶中对柠檬烯 SOA 的水相氧化将具有重要意义。

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