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Atmospheric chemistry of alkyl iodides: theoretical studies on the mechanisms and kinetics of CH3I/C2H5I + NO3 reactions

机译:烷基碘的大气化学:CH3I / C2H5I + NO3反应的机理和动力学的理论研究

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The gas-phase reactions of CH3I and C2H5I with NO3 radicals have been studied using a dual-level direct kinetics method. The minimum energy paths have been refined by CCSD(T) and QCISD(T) methods. One displacement and two hydrogen abstraction processes were found for the reaction of CH3I + NO3. For the reaction of C2H5I + NO3, three hydrogen abstraction and one displacement channel were found. The hydrogen abstraction from the -CH2- group was found to be the dominant channel. The displacement channel of the title reactions may be negligible because of the high barrier. The rate constants for the individual reaction channels were followed by means of the canonical variational transition state with the small-curvature tunneling correction. The calculated rate constants were in reasonable agreement with the available data from experiments. The Arrhenius expressions for the title reactions are given as follows: k(a) = 8.62 x 10(-32)T(6.66) exp(1324.23/T), k(b) = 9.48 x 10(-27)T(5.75) exp(-655.34/T) cm(3) per molecule per s. The atmospheric lifetimes of CH3I and C2H5I determined by reaction with the NO3 radical were about 3.07 and 5.86 h, which indicate that they can be degraded in the gas phase within a short time to serve as a source of reactive iodine compounds at night-time.
机译:使用双级直接动力学方法研究了CH3I和C2H5I与NO3自由基的气相反应。最小能量路径已通过CCSD(T)和QCISD(T)方法进行了完善。发现CH 3 I + NO 3的反应有一个置换和两个氢提取过程。对于C 2 H 5 I + NO 3的反应,发现了三个氢的夺取和一个置换通道。发现从-CH 2-基团提取氢是主要通道。由于高的势垒,标题反应的置换通道可以忽略不计。各个反应通道的速率常数通过具有小曲率隧穿校正的规范变化过渡态来跟踪。计算出的速率常数与来自实验的可用数据合理地吻合。标题反应的Arrhenius表达式如下:k(a)= 8.62 x 10(-32)T(6.66)exp(1324.23 / T),k(b)= 9.48 x 10(-27)T(5.75) )exp(-655.34 / T)cm(3)每分子每s。通过与NO3自由基反应确定的CH3I和C2H5I的大气寿命约为3.07和5.86 h,这表明它们可以在短时间内在气相中降解,从而在夜间用作反应性碘化合物的来源。

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