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Density functional theory study on OH-Initiated atmospheric oxidation of m-xylene

机译:OH引发的间二甲苯大气氧化的密度泛函理论研究

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The OH-initiated oxidation reactions of m-xylene are investigated using density functional theory. The structures, energetics, and relative stability of the OH-m-xylene reaction intermediate radicals have been determined, and their activation barriers have been analyzed to assess the energetically favorable pathways to propagate the oxidation. OH addition occurs preferentially at the two ortho positions with the branching ratios of 0.97, 0.02, and 0.01 for ortho, meta, and ipso additions, respectively. The results reveal that the OH-m-xylene-O-2 peroxy radicals preferentially cyclize to form bicyclic radicals under atmospheric conditions rather than reacting with NO to lead to ozone formation, and the decomposition to O-2 and the hydroxyl m-xylene adduct is competitive with the cyclization process. The bicyclic radicals of m-xylene formed from the major OH-addition pathways (i.e., ortho positions) are more probable to form bicyclic peroxy radicals by reacting with O-2. This study provides thermochemical and kinetic data of the OH-initiated reactions of m-xylene for assessment of the role of aromatic hydrocarbons in photochemical production of ozone, toxic products, and secondary organic aerosols.
机译:使用密度泛函理论研究了OH引发的间二甲苯氧化反应。已经确定了OH-间二甲苯反应中间基的结构,能量和相对稳定性,并分析了它们的活化势垒以评估在能量上有利的传播氧化的途径。 OH添加优先发生在两个邻位,邻位,间位和间位添加的支化比分别为0.97、0.02和0.01。结果表明,OH-间二甲苯-O-2过氧自由基在大气条件下优先环化形成双环自由基,而不是与NO反应导致形成臭氧,并分解为O-2和羟基间二甲苯加合物在环化过程中具有竞争力。由主要的OH加成途径(即邻位)形成的间二甲苯的双环自由基更可能通过与O-2反应形成双环过氧自由基。这项研究提供了间二甲苯的OH引发反应的热化学和动力学数据,用于评估芳烃在臭氧,有毒产品和二次有机气溶胶的光化学生产中的作用。

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