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Theoretical study on the degradation mechanism of methamidophos and chloramine phosphorus with OH radicals

机译:甲胺磷和氯胺磷被OH自由基降解机理的理论研究

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Theoretical investigation on the gas-phase degradation reaction mechanism of methamidophos (MAP) and chloramine phosphorus (CHP) with OH radicals is performed. The equilibrium geometries and the harmonic vibration frequencies of the stationary points are obtained at M06-2x/6-31+G(d,p) level, and the higher-level energetic information is further refined at M06-2x/6-311++G(3df,2p) level. The rate constants for the 14 reaction channels are calculated by the improved canonical variational transition state theory with small-curvature tunneling correction over the temperature range 200-2000 K. The three-parameter expressions of k(1)(T)=1.53 x 10(-19)T(2.74)exp(-1005.12/T), k(2)(T)=1.36 x 10(-20)T(3.02)exp(-1259.56/T) are given. The total rate constants of all reaction channels of MAP with OH radicals are in good agreement with the available experimental data. Our results indicate that the H-abstraction reactions on methyl are the major channels for the reaction of MAP and CHP with OH radicals. (c) 2015 Wiley Periodicals, Inc.
机译:对甲胺磷(MAP)和氯胺磷(CHP)与OH自由基的气相降解反应机理进行了理论研究。在M06-2x / 6-31 + G(d,p)级别获得平衡点的几何形状和谐波振动频率,并在M06-2x / 6-311 +进一步完善更高级别的能量信息+ G(3df,2p)等级。通过改进的规范变分过渡态理论,在200-2000 K的温度范围内采用小曲率隧道校正,计算了14个反应通道的速率常数。k(1)(T)= 1.53 x 10的三参数表达式给出(-19)T(2.74)exp(-1005.12 / T),k(2)(T)= 1.36 x 10(-20)T(3.02)exp(-1259.56 / T)。 MAP与OH自由基的所有反应通道的总速率常数与可得的实验数据高度吻合。我们的结果表明,甲基上的H-抽象反应是MAP和CHP与OH自由基反应的主要途径。 (c)2015年威利期刊有限公司

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