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α-蒎烯二次有机气溶胶在水相中的羟基自由基老化:动力学和产物。

Aging of α-Pinene Secondary Organic Aerosol by Hydroxyl Radicals in the Aqueous Phase: Kinetics and Products.

机构信息

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

出版信息

Environ Sci Technol. 2023 Apr 18;57(15):6040-6051. doi: 10.1021/acs.est.2c07630. Epub 2023 Apr 4.

Abstract

The reaction of hydroxyl radicals (OH) with a water-soluble fraction of the α-pinene secondary organic aerosol (SOA) was investigated using liquid chromatography coupled with negative electrospray ionization mass spectrometry. The SOA was generated by the dark ozonolysis of α-pinene, extracted into the water, and subjected to chemical aging by the OH. Bimolecular reaction rate coefficients () for the oxidation of terpenoic acids by the OH were measured using the relative rate method. The unaged SOA was dominated by the cyclobutyl-ring-retaining compounds, primarily -pinonic, -pinic, and hydroxy-pinonic acids. Aqueous oxidation by the OH resulted in the removal of early-stage products and dimers, including well-known oligomers with MW = 358 and 368 Da. Furthermore, a 2- to 5-fold increase in the concentration of cyclobutyl-ring-opening products was observed, including terpenylic and diaterpenylic acids and diaterpenylic acid acetate as well as some of the newly identified OH aging markers. At the same time, results obtained from the kinetic box model showed a high degree of SOA fragmentation following the reaction with the OH, which indicates that non-radical reactions occurring during the evaporation of water likely contribute to the high yields of terpenoic SOAs reported previously. The estimated atmospheric lifetimes showed that in clouds, terpenoic acids react with the OH exclusively in the aqueous phase. Aqueous OH aging of the α-pinene SOA results in a 10% increase of the average O/C ratio and a 3-fold decrease in the average value, which is likely to affect the cloud condensation nuclei activity of the SOA formed after the evaporation of water.

摘要

羟基自由基(OH)与α-蒎烯二次有机气溶胶(SOA)的水溶性部分的反应采用液相色谱与负电喷雾电离质谱联用进行了研究。SOA 通过α-蒎烯的暗臭氧化生成,提取到水中,并通过 OH 进行化学老化。使用相对速率法测量了萜烯酸被 OH 氧化的双分子反应速率系数(k)。未老化的 SOA 主要由保留环丁基的化合物组成,主要为β-蒎烯酸、α-蒎烯酸和羟基-β-蒎烯酸。OH 的水相氧化导致早期产物和二聚体的去除,包括具有 MW = 358 和 368 Da 的已知低聚物。此外,观察到环丁基开环产物的浓度增加了 2-5 倍,包括萜烯酸和二萜烯酸以及二萜烯酸乙酸盐以及一些新鉴定的 OH 老化标志物。同时,动力学箱模型的结果表明,在与 OH 反应后,SOA 高度碎片化,这表明在水蒸发过程中发生的非自由基反应可能导致先前报道的萜烯 SOA 高产率。估计的大气寿命表明,在云层中,萜烯酸仅在水相中与 OH 反应。α-蒎烯 SOA 的 OH 水相老化导致平均 O/C 比增加 10%,平均 值降低 3 倍,这可能会影响水蒸发后形成的 SOA 的云凝结核活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e58/10116591/d1881e4003b8/es2c07630_0002.jpg

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