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Role of methyl group number on SOA formation from monocyclic aromatic hydrocarbons photooxidation under low-NOx conditions

机译:甲基数对低NOx条件下单环芳烃光氧化的SOA形成的作用

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Substitution of methyl groups onto the aromatic ring determines the secondary organic aerosol (SOA) formation from the monocyclic aromatic hydrocarbon precursor (SOA yield and chemical composition). This study links the number of methyl groups on the aromatic ring to SOA formation from monocyclic aromatic hydrocarbons photooxidation under low-NOx conditions (HC/NO????10?ppbC?:?ppb). Monocyclic aromatic hydrocarbons with increasing numbers of methyl groups are systematically studied. SOA formation from pentamethylbenzene and hexamethylbenzene are reported for the first time. A decreasing SOA yield with increasing number of methyl groups is observed. Linear trends are found in both f44 vs.?f43 and O?/?C vs.?H?/?C for SOA from monocyclic aromatic hydrocarbons with zero to six methyl groups. An SOA oxidation state predictive method based on benzene is used to examine the effect of added methyl groups on aromatic oxidation under low-NOx conditions. Further, the impact of methyl group number on density and volatility of SOA from monocyclic aromatic hydrocarbons is explored. Finally, a mechanism for methyl group impact on SOA formation is suggested. Overall, this work suggests that, as more methyl groups are attached on the aromatic ring, SOA products from these monocyclic aromatic hydrocarbons become less oxidized per mass/carbon on the basis of SOA yield or chemical composition.
机译:将甲基取代到芳环上,从单环芳烃前体(SOA产量和化学成分)确定二次有机气溶胶(SOA)。本研究链接低NOx条件(HC / NO ???? 10 ppbC????:ppb)的下芳香环以从单环芳香族烃的光氧化SOA形成上甲基基团的数目。系统地研究了随着越来越多的甲基含量的单环芳烃。首次报告了来自五甲基苯和六甲基苯的SOA形成。观察到随着越来越多的甲基含量的降低的SOA产量。在F44 vs.?F43和O?/ cvs.δho?/?c中发现了线性趋势,用于从单环芳烃的SOA,其具有零至六个甲基。基于苯的SOA氧化状态预测方法用于检查添加甲基对低NOx条件下芳族氧化的影响。此外,探讨了甲基数对单环芳烃的密度和挥发性的影响。最后,提出了对甲基甲基对SOA形成的影响。总体而言,这项工作表明,随着更多甲基在芳环上连接,来自这些单环芳烃的SOA产品在SOA产量或化学组合物的基础上变得较小。

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