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气相中乙醛酸和 SO 反应生成的乙醛酸硫酸酐:一种潜在的成核前体。

Glyoxylic Sulfuric Anhydride from the Gas-Phase Reaction between Glyoxylic Acid and SO: A Potential Nucleation Precursor.

机构信息

Key Laboratory of Cluster Science, Ministry of Education of China, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, China.

出版信息

J Phys Chem A. 2020 Apr 23;124(16):3261-3268. doi: 10.1021/acs.jpca.0c01558. Epub 2020 Apr 13.

Abstract

Oxocarboxylic acids, one of the most important organic species, are detected in aerosols in various environments. Recent studies suggest that the gas-phase reactions between carboxylic acids and SO could form carboxylic sulfuric anhydrides, which might participate in nucleation. Here, glyoxylic acid (), the most abundant oxocarboxylic acid in the atmosphere, has been selected as an example to study the reactions between oxocarboxylic acids and SO and the nucleation potentials of products. The reaction between and SO that generates glyoxylic sulfuric anhydride () and the hydrolysis of are investigated using computational methods. The results show that the reaction is almost barrierless, and is stable against water. Additionally, the clusters of and common nucleation species (sulfuric acid and ammonia) are more stable than the analogous clusters of , because they have more hydrogen bonds and proton transfers. It suggests that tends to transfer itself to a much better nucleation precursor, , through a reaction with SO, and can drive nucleation and contribute to new particle formation (NPF). This mechanism might be general for all oxocarboxylic acids and could help to deeply understand the roles of oxocarboxylic acids in NPF.

摘要

氧代羧酸是一种非常重要的有机物质,在各种环境中的气溶胶中都有检测到。最近的研究表明,羧酸和 SO 之间的气相反应可能形成羧酸硫酸酐,这可能参与成核过程。在这里,选择了乙醛酸()作为最丰富的大气中氧代羧酸的例子,研究了氧代羧酸与 SO 的反应以及产物的成核潜力。使用计算方法研究了和 SO 生成乙醛酸硫酸酐()的反应以及的水解反应。结果表明,该反应几乎没有势垒,且对水稳定。此外,和常见成核物质(硫酸和氨)的团簇比类似的团簇更稳定,因为它们具有更多的氢键和质子转移。这表明通过与 SO 的反应,倾向于将自身转化为更好的成核前体,并且可以驱动成核并有助于新粒子形成(NPF)。这种机制可能对所有氧代羧酸都通用,并有助于更深入地了解氧代羧酸在 NPF 中的作用。

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