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人为硫干扰生物氧化:SO2 添加物对 α-和 β-蒎烯的气相 OH 氧化产物的影响。

Anthropogenic Sulfur Perturbations on Biogenic Oxidation: SO2 Additions Impact Gas-Phase OH Oxidation Products of α- and β-Pinene.

机构信息

Department of Chemistry, Colorado State University , Fort Collins, Colorado 80523-1872, United States.

Department of Meteorology, Pennsylvania State University , University Park, Pennsylvania 16802, United States.

出版信息

Environ Sci Technol. 2016 Feb 2;50(3):1269-79. doi: 10.1021/acs.est.5b05010. Epub 2016 Jan 20.

Abstract

In order to probe how anthropogenic pollutants can impact the atmospheric oxidation of biogenic emissions, we investigated how sulfur dioxide (SO2) perturbations impact the oxidation of two monoterpenes, α-and β-pinene. We used chemical ionization mass spectrometry to examine changes in both individual molecules and gas-phase bulk properties of oxidation products as a function of SO2 addition. SO2 perturbations impacted the oxidation systems of α-and β-pinene, leading to an ensemble of products with a lesser degree of oxygenation than unperturbed systems. These changes may be due to shifts in the OH:HO2 ratio from SO2 oxidation and/or to SO3 reacting directly with organic molecules. Van Krevelen diagrams suggest a shift from gas-phase functionalization by alcohol/peroxide groups to functionalization by carboxylic acid or carbonyl groups, consistent with a decreased OH:HO2 ratio. Increasing relative humidity dampens the impact of the perturbation. This decrease in oxygenation may impact secondary organic aerosol formation in regions dominated by biogenic emissions with nearby SO2 sources. We observed sulfur-containing organic compounds following SO2 perturbations of monoterpene oxidation; whether these are the result of photochemistry or an instrumental artifact from ion-molecule clustering remains uncertain. However, our results demonstrate that the two monoterpene isomers produce unique suites of oxidation products.

摘要

为了探究人为污染物如何影响生物源排放物的大气氧化,我们研究了二氧化硫 (SO2) 干扰如何影响两种单萜烯,α-和 β-蒎烯的氧化。我们使用化学电离质谱来检查 SO2 加标后单个分子和气相整体氧化产物性质的变化。SO2 干扰影响了 α-和 β-蒎烯的氧化体系,导致氧化产物的含氧程度低于未受干扰的体系。这些变化可能是由于 SO2 氧化导致的 OH:HO2 比值变化,或者是由于 SO3 与有机分子直接反应。Van Krevelen 图表明,从醇/过氧化物基团的气相官能化转变为羧酸或羰基基团的官能化,与 OH:HO2 比值降低一致。相对湿度的增加会减轻干扰的影响。这种含氧程度的降低可能会影响以生物源排放为主、附近有 SO2 源的地区的二次有机气溶胶形成。我们观察到单萜烯氧化的 SO2 干扰后出现含硫有机化合物;这些化合物是光化学的结果还是离子-分子簇的仪器artifact 仍然不确定。然而,我们的结果表明,两种单萜烯异构体产生独特的氧化产物套件。

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