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Determination of the rate constant for sulfur recombination by quasiclassical trajectory calculations

机译:用准经典轨迹计算确定硫复合的速率常数

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The sulfur recombination reaction has been thought of as one of the most important chemical reactions in the volcanic activities of the planet. It is also important in determining the propagation of elemental sulfur in the atmosphere. There have been two experimental attempts to determine the reaction rate of the S+S -> S-2 recombination, however their results differ by four orders of magnitude. In this work, we determine the rate constant of S+S -> S-2 from quasiclassical trajectory calculations. The third order rate constant at 298.15 K predicted by the present calculations is 4.19x10(-33) cm(6) molecules(-2) s(-1), which is in excellent agreement with the determination of Fair and Thrush [Trans. Faraday Soc. 65, 1208 (1969)]. The temperature dependent rate constant is determined to be 3.94x10(-33) exp[205.56(1/T-1/298.15)], which was determined from the temperature range of 100-500 K. (C) 2008 American Institute of Physics.
机译:硫的重组反应被认为是地球火山活动中最重要的化学反应之一。这对于确定元素硫在大气中的传播也很重要。已经进行了两次实验来确定S + S-> S-2重组的反应速率,但是它们的结果相差四个数量级。在这项工作中,我们从准经典轨迹计算中确定S + S-> S-2的速率常数。通过当前计算预测的在298.15 K处的三阶速率常数为4.19x10(-33)cm(6)分子(-2)s(-1),这与Fair和Thrush [Trans。法拉第社会。 65,1208(1969)]。取决于温度的速率常数确定为3.94x10(-33)exp [205.56(1 / T-1 / 298.15)],该常数是根据100-500 K的温度范围确定的。(C)2008年美国物理研究所。

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