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首页> 外文期刊>Environmental Science and Pollution Research >Computational study of H-abstraction reactions from CH3OCH2CH2Cl/CH3CH2OCH2CH2Cl by Cl atom and OH radical and fate of alkoxy radicals
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Computational study of H-abstraction reactions from CH3OCH2CH2Cl/CH3CH2OCH2CH2Cl by Cl atom and OH radical and fate of alkoxy radicals

机译:CH3CH2CH2Cl / CH3CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CL的计算研究及烷氧基自由基

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摘要

Multichannel gas-phase reactions of CH3OCH2CH2Cl/CH3CH2OCH2CH2Cl with chlorine atom and hydroxyl radical have been investigated using ab initio method and canonical variational transition-state dynamic computations with the small-curvature tunneling correction. Further energetic information is refined by the coupled-cluster calculations with single and double excitations (CCSD)(T) method. Both hydrogen abstraction and displacement processes are carried out at the same level. Our results reveal that H-abstraction from the -OCH2- group is the dominant channel for CH3OCH2CH2Cl by OH radical or Cl atom, and from alpha-CH2 of the group CH3CH2- is predominate for the reaction CH3CH2OCH2CH2Cl with Cl/OH. The contribution of displacement processes may be unimportant due to the high barriers. The values of the calculated rate constants reproduce remarkably well the available experiment data. Standard enthalpies of formation for reactants and product radicals are calculated by isodesmic reactions. The Arrhenius expressions are given within 220-1200 K. The atmospheric lifetime, ozone depleting potential (ODP), ozone formation potential (OFP), and global warming potential (GWP) of CH3OCH2CH2Cl/CH3CH2OCH2CH2Cl are investigated. Meanwhile, the atmospheric fate of the alkoxy radicals are also researched using the same level of theory. To shed light on the atmospheric degradation, a mechanistic study is obtained, which indicates that reaction with O-2 is the dominant path for the decomposition of CH3OCH(O center dot)CH2Cl, the C-C bond scission reaction is the primary reaction path in the consumption of CH3CH(O center dot)OCH2CH2Cl in the atmosphere.
机译:使用AB Initio方法和规范变分过渡状态动态计算,研究了具有氯原子和羟基自由基的CH3OCH2CH2Cl / CH3CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH2CH 2 CH 2 CH 2 CH 2 CH 2 CH 2 CL的多通道气相反应。通过单一和双激发(CCSD)(T)方法的耦合集群计算,通过耦合集群计算来改进进一步的精力充沛信息。氢抽取和位移过程都在相同的水平下进行。我们的研究结果表明,来自-Och2-组的H拔抽象是OH基团或Cl原子的CH 3OCH2CH2CL的主导通道,并且从基团CH 3 CH 2的α-CH 2与CL / OH的反应CH 3 CH 2 CH 2 Cl占主导地位。由于高障碍,位移过程的贡献可能是不重要的。计算的速率常数的值非常好地再现可用的实验数据。反应物和产物自由基形成标准焓通过体育反应计算。 Arrhenius表达式在220-1200 K中给出。研究了大气寿命,臭氧耗尽电位(ODP),臭氧地层电位(OFP)和全球变暖电位(GWP)的CH3OCH2CH2CL / CH3CH2CH2CH2CL。同时,烷氧基自由基的大气命运也使用相同的理论水平进行研究。在大气降解上脱光,获得了机械研究,这表明与O-2的反应是CH3OCH(O中心点)CH 2 Cl分解的主要路径,CC键易分解反应是初级反应路径在大气中消耗CH3CH(O中心点)OCH2CH2CL。

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