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Rate constants for hydrogen abstraction reactions by the hydroperoxyl radical from methanol, ethenol, acetaldehyde, toluene, and phenol

机译:氢过氧自由基从甲醇,乙醇,乙醛,甲苯和苯酚进行氢提取反应的速率常数

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摘要

An important step in the initial oxidation of hydrocarbons at low to intermediate temperatures is the abstraction of H by hydroperoxyl radical (HO). In this study, we calculate energy profiles for the sequence: reactant + HO → [complex of reactants] → transition state → [complex of products] → product + HO for methanol, ethenol (i.e., CHOH), acetaldehyde, toluene, and phenol. Rate constants are provided in the simple Arrhenius form. Reasonable agreement was obtained with the limited literature data available for acetaldehyde and toluene. Addition of HO to the various distinct sites in phenol is investigated. Direct abstraction of the hydroxyl H was found to dominate over HO addition to the ring. The results presented herein should be useful in modeling the lower temperature oxidation of the five compounds considered, especially at low temperature where the HO is expected to exist at reactive levels.
机译:在低温到中温下烃类初始氧化的重要步骤是氢过氧自由基(HO)提取H。在这项研究中,我们计算以下序列的能量分布:反应物+ HO→[反应物的络合物]→过渡态→[产物的络合物]→产物+甲醇,乙醇(即CHOH),乙醛,甲苯和苯酚的HO 。速率常数以简单的Arrhenius形式提供。乙醛和甲苯的文献资料有限,取得了合理的共识。研究了HO在苯酚中各个不同部位的加成。发现羟基H的直接夺取在环的HO加成上起主要作用。本文介绍的结果应可用于对所考虑的五种化合物的低温氧化进行建模,尤其是在预计HO以反应性水平存在的低温下。

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