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Direct photolysis of carbonyl compounds dissolved in cloud and fog~droplets

机译:溶解在云和雾中的羰基化合物的直接光解〜液滴

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Gas-phase photolysis is an important tropospheric sink for many carbonyl compounds; however the significance of direct photolysis of these compounds dissolved in cloud and fog droplets is uncertain. We develop a theoretical approach to assess the importance of aqueous photolysis for a series of carbonyls that possess carboxyl and hydroxyl functional groups by comparison with rates of other atmospheric processes. We use computationally and experimentally derived effective Henry's law constants, hydration equilibrium parameters, aqueous hydroxyl radical (OH) rate constants, and optical extinction coefficients to identify types of compounds that will (or will not) have competitive aqueous photolysis rates. We also present molecular dynamics simulations designed to estimate gas- and aqueous-phase extinction coefficients of unstudied atmospherically relevant compounds found in d-limonene and isoprene secondary organic aerosol. In addition, experiments designed to measure the photolysis rate of glyceraldehyde, an atmospherically relevant water-soluble organic compound, reveal that aqueous quantum yields are highly molecule-specific and cannot be extrapolated from measurements of structurally similar compounds. We find that only two out of the 92 carbonyl compounds investigated, pyruvic acid and acetoacetic acid, may have aqueous photolysis rates that exceed the rate of oxidation by dissolved OH. For almost all carbonyl compounds lacking α,β-conjugation that were investigated, atmospheric removal by direct photolysis in cloud and fog droplets can be neglected under typical atmospheric conditions.
机译:气相光解是许多羰基化合物的重要的对流层水槽;然而,将溶解在云和雾滴中溶解的这些化合物的直接光解的重要性是不确定的。我们开发了一种理论方法,以评估含水光解的重要性,通过与其他大气方法的速率进行比较,通过与其他大气方法的速率进行比较,评估含水光解的一系列羰基。我们使用计算上和实验衍生的亨利法常数,水合平衡参数,羟基自由基(OH)速率常数,以及光学消光系数,以鉴定将(或不会)具有竞争性水性光解率的化合物类型。我们还提出了旨在估计D-柠檬烯和异戊二烯二次有机气溶胶中未存在的富集的大气相关化合物的气体和水相消光系数的分子动力学模拟。此外,设计用于测量甘氨醛的光解率,大气相关的水溶性有机化合物,揭示量子产率高度分子特异性,不能从结构上类似的化合物的测量外推。我们发现,所研究的92个羰基化合物中只有两个,丙酮酸和乙酰乙酸可以具有超过溶解的氧化速率的水性光解率。对于几乎所有缺乏α的羰基化合物,在典型的大气条件下通过直接光解和雾滴通过直接光解除去大气除去β-缀合物。

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