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Formation of highly oxygenated organic molecules from aromatic compounds

机译:由芳族化合物形成高度氧化的有机分子

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Anthropogenic volatile organic compounds (AVOCs) often dominate the urban atmosphere and consist to a large degree of aromatic hydrocarbons (ArHCs), such as benzene, toluene, xylenes, and trimethylbenzenes, e.g., from the handling and combustion of fuels. These compounds are important precursors for the formation of secondary organic aerosol. Here we show that the oxidation of aromatics with OH leads to a subsequent autoxidation chain reaction forming highly oxygenated molecules (HOMs) with an O?:?C ratio of up to 1.09. This is exemplified for five single-ring ArHCs (benzene, toluene, o-/m-/p-xylene, mesitylene (1,3,5-trimethylbenzene) and ethylbenzene), as well as two conjugated polycyclic ArHCs (naphthalene and biphenyl). We report the elemental composition of the HOMs and show the differences in the oxidation patterns of these ArHCs. A potential pathway for the formation of these HOMs from aromatics is presented and discussed. We hypothesize that AVOCs may contribute substantially to new particle formation events that have been detected in urban areas.
机译:人为的挥发性有机化合物(AVOC)通常在城市大气中占主导地位,并由大量的芳香烃(ArHC)组成,例如苯,甲苯,二甲苯和三甲基苯,例如来自燃料的处理和燃烧。这些化合物是形成次级有机气溶胶的重要前体。在此我们表明,芳族化合物被OH氧化会导致随后的自氧化链反应,形成高氧化的分子(HOM),O2:?C比率高达1.09。对于五个单环ArHC(苯,甲苯,邻/间/对二甲苯,均三甲苯(1,3,5-三甲基苯)和乙苯)以及两个共轭多环ArHC(萘和联苯)而言。我们报告了HOMs的元素组成,并显示了这些ArHCs氧化模式的差异。提出并讨论了由芳烃形成这些HOM的潜在途径。我们假设,AVOCs可能对在城市地区发现的新的颗粒形成事件有重大贡献。

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