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乙二醛和羟基自由基的气-液界面光化学反应生成可溶解性有机质(aqSOA)的演变。

Evolution of aqSOA from the Air-Liquid Interfacial Photochemistry of Glyoxal and Hydroxyl Radicals.

机构信息

Department of Environmental Science & Engineering, Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) , Fudan University , Shanghai , 200433 , China.

Energy and Environment Directorate , Pacific Northwest National Laboratory , Richland , Washington 99354 , United States.

出版信息

Environ Sci Technol. 2019 Sep 3;53(17):10236-10245. doi: 10.1021/acs.est.9b03642. Epub 2019 Aug 13.

Abstract

The effect of photochemical reaction time on glyoxal and hydrogen peroxide at the air-liquid (a-l) interface is investigated using in situ time-of-flight secondary ion mass spectrometry (ToF-SIMS) enabled by a system for analysis at the liquid vacuum interface (SALVI) microreactor. Carboxylic acids are formed mainly by reaction with hydroxyl radicals in the initial reactions. Oligomers, cluster ions, and water clusters formed due to longer photochemistry. Our results provide direct molecular evidence that water clusters are associated with proton transfer and the formation of oligomers and cluster ions at the a-l interface. The oligomer formation is facilitated by water cluster and cluster ion formation over time. Formation of higher / oligomers and cluster ions indicates the possibility of highly oxygenated organic components formation at the a-l interface. Furthermore, new chemical reaction pathways, such as surface organic cluster, hydration shell, and water cluster formation, are proposed based on SIMS spectral observations, and the existing understanding of glyoxal photochemistry is expanded. Our in situ findings verify that the a-l interfacial reactions are important pathways for aqueous secondary organic aerosol (aqSOA) formation.

摘要

利用液体真空界面(SALVI)微反应器分析系统,通过原位飞行时间二次离子质谱(ToF-SIMS)研究了气液(a-l)界面上光化学反应时间对乙二醛和过氧化氢的影响。在初始反应中,羧酸主要通过与羟基自由基反应形成。较长的光化学反应会形成低聚物、团簇离子和水团簇。我们的结果提供了直接的分子证据,表明水团簇与质子转移以及在 a-l 界面上形成低聚物和团簇离子有关。随着时间的推移,水团簇和团簇离子的形成促进了低聚物的形成。更高的 / 低聚物和团簇离子的形成表明在 a-l 界面上形成高度氧化的有机成分的可能性。此外,根据 SIMS 光谱观察,提出了新的化学反应途径,如表面有机团簇、水合壳和水团簇形成,并扩展了对乙二醛光化学的现有理解。我们的原位发现验证了 a-l 界面反应是水相二次有机气溶胶(aqSOA)形成的重要途径。

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