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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >A Combined Experimental and Theoretical Study of the Reaction OH+2-Butene in the 400-800 K Temperature Range
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A Combined Experimental and Theoretical Study of the Reaction OH+2-Butene in the 400-800 K Temperature Range

机译:温度范围为400-800 K的OH + 2-丁烯反应的组合实验和理论研究

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摘要

We report a combined experimental and theoretical study of the OH + cis-2-butene and OH + trans-2-butene reactions at combustion-relevant conditions: pressures of 1-20 bar and temperatures of 400-800 K. We probe the OH radical time histories by laser-induced fluorescence and analyze these experimental measurements with aid from time-dependent master-equation calculations. Importantly, our investigation covers a temperature range where experimental data on OH + alkene chemistry in general are lacking, and interpretation of such data is challenging due to the complexity of the competing reaction pathways. Guided by theory, we unravel this complex behavior and determine the temperature- and pressure-dependent rate coefficients for the three most important OH + 2-butene reaction channels at our conditions: H abstraction, OH addition to the double bond, and back-dissociation of the OH-butene adduct.
机译:我们报告了燃烧相关条件下OH +顺式-2-丁烯和OH +反式-2-丁烯反应的组合实验和理论研究:压力为1-20 bar,温度为400-800K。我们研究了OH通过激光诱导的荧光激发时间历史,并在依赖于时间的主方程计算的帮助下分析这些实验测量结果。重要的是,我们的研究涵盖了通常缺乏OH +烯烃化学实验数据的温度范围,并且由于竞争反应途径的复杂性,对此类数据的解释具有挑战性。在理论的指导下,我们揭示了这种复杂的行为,并确定了在我们的条件下三个最重要的OH + 2-丁烯反应通道的温度和压力相关的速率系数:H提取,双键中的OH加成和反向离解OH-丁烯加合物。

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