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空气-水界面处表面活性顺式蒎酸的羟基自由基氧化反应

OH-Radical Oxidation of Surface-Active cis-Pinonic Acid at the Air-Water Interface.

作者信息

Enami Shinichi, Sakamoto Yosuke

机构信息

The Hakubi Center for Advanced Research, Kyoto University , Kyoto 606-8302, Japan.

Research Institute for Sustainable Humanosphere, Kyoto University , Uji 611-0011, Japan.

出版信息

J Phys Chem A. 2016 May 26;120(20):3578-87. doi: 10.1021/acs.jpca.6b01261. Epub 2016 May 9.

Abstract

Gaseous biogenic volatile organic compounds (BVOCs) are immediately oxidized by gaseous oxidants to form BVOC-acids that rapidly condense onto aqueous aerosol phase and thus contribute to the growth of atmospheric particles. Because BVOC-acids are highly hydrophobic and hence surface-active in nature, it seems critical to study the oxidation by gaseous hydroxyl radical (·OH(g)) at the air-water interface. Here we report on the fast (≤10 μs) oxidation of aqueous cis-pinonic acid (C10H16O3, CPA, cis-pinonate anion's m/z = 183), a representative BVOC-acid, by ·OH(g) at the air-water interface for the first time. We find that cis-pinonate anion is more enriched at the air-water interface by ∼4 and ∼14 times than n-octanoate anion at 10 and 100 μM, respectively, as revealed by an interface-specific mass spectrometry of the equimolar mixture of microjets. Exposure of aqueous CPA microjets to ·OH(g) pulses from the 266 nm laser photolysis of O3(g)/O2(g)/H2O(g)/N2(g) mixtures yields pinonic peroxyl radicals (m/z = 214) that lead to the functionalization products carbonyls (m/z = 197), alcohols (m/z = 199), and pinonic hydroperoxides (m/z = 215) in addition to smaller-mass products including carbonyls (m/z = 155 and 157). We confirmed the formation of the corresponding alcohols, aldehydes, and hydroperoxides in experiments performed in D2O solvent. The analysis of total mass balance implies a significant amount (>70%) of products would be emitted into the gas-phase during the heterogeneous ·OH-oxidations. Our results suggest ·OH-oxidations of amphiphilic BVOC-acids at the air-water interface may play a far more significant role in photochemical aging process of aqueous aerosols than previously assumed.

摘要

气态生物源挥发性有机化合物(BVOCs)会立即被气态氧化剂氧化,形成BVOC-酸,这些酸会迅速凝结到水相气溶胶相中,从而促进大气颗粒物的生长。由于BVOC-酸具有高度疏水性,因此本质上具有表面活性,研究气态羟基自由基(·OH(g))在气-水界面的氧化作用似乎至关重要。在此,我们首次报道了在气-水界面,代表性的BVOC-酸——顺式蒎酸(C10H16O3,CPA,顺式蒎酸根阴离子的m/z = 183)被·OH(g)快速(≤10 μs)氧化的情况。我们发现,通过微射流等摩尔混合物的界面特异性质谱分析表明,在10 μM和100 μM时,顺式蒎酸根阴离子在气-水界面的富集程度分别比正辛酸根阴离子高约4倍和14倍。将CPA微射流水溶液暴露于由O3(g)/O2(g)/H2O(g)/N2(g)混合物的266 nm激光光解产生的·OH(g)脉冲中,会产生蒎过氧自由基(m/z = 214),除了包括羰基(m/z = 155和157)在内的较小质量产物外,还会生成官能化产物羰基(m/z = 197)、醇(m/z = 199)和蒎氢过氧化物(m/z = 215)。我们在D2O溶剂中进行的实验中证实了相应醇、醛和氢过氧化物的形成。总质量平衡分析表明,在非均相·OH氧化过程中,大量(>70%)产物会排放到气相中。我们的结果表明,两亲性BVOC-酸在气-水界面的·OH氧化在水性气溶胶的光化学老化过程中可能比以前认为的发挥更重要的作用。

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