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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Kinetic Modeling of α-Hydrogen Abstractions from Unsaturated and Saturated Oxygenate Compounds by Hydrogen Atoms
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Kinetic Modeling of α-Hydrogen Abstractions from Unsaturated and Saturated Oxygenate Compounds by Hydrogen Atoms

机译:氢原子从不饱和和饱和含氧化合物中提取氢的动力学模型

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Hydrogen-abstraction reactions play a significant role in thermal biomass conversion processes, as well as regular gasification, pyrolysis, or combustion. In this work, a group additivity model is constructed that allows prediction of reaction rates and Arrhenius parameters of hydrogen abstractions by hydrogen atoms from alcohols, ethers, esters, peroxides, ketones, aldehydes, acids, and diketones in a broad temperature range (300-2000 K). A training set of 60 reactions was developed with rate coefficients and Arrhenius parameters calculated by the CBS-QB3 method in the high-pressure limit with tunneling corrections using Eckart tunneling coefficients. From this set of reactions, 15 group additive values were derived for the forward and the reverse reaction, 4 referring to primary and 11 to secondary contributions. The accuracy of the model is validated upon an ab initio and an experimental validation set of 19 and 21 reaction rates, respectively, showing that reaction rates can be predicted with a mean factor of deviation of 2 for the ab initio and 3 for the experimental values. Hence, this work illustrates that the developed group additive model can be reliably applied for the accurate prediction of kinetics of α-hydrogen abstractions by hydrogen atoms from a broad range of oxygenates.
机译:吸氢反应在热生物质转化过程以及常规的气化,热解或燃烧中起着重要作用。在这项工作中,构建了一个可加性模型,该模型可以预测在宽温度范围内(300-300°C)从醇,醚,酯,过氧化物,酮,醛,酸和二酮中的氢原子产生的氢的反应速率和阿伦尼乌斯参数。 2000 K)。开发了一个包含60个反应的训练集,其速率系数和Arrhenius参数是通过CBS-QB3方法在高压极限中通过Eckart隧穿系数进行隧穿校正而计算出的。从这组反应中,可以得出15个正向和反向反应的组加性值,其中4个是主要贡献,11个是次要贡献。该模型的准确性分别从头算和实验验证集(分别为19和21个反应速率)进行了验证,表明可以从ab从头算出2的平均偏差因子和实验值的平均偏差因子3来预测反应速率。因此,这项工作说明,所开发的基团加成模型可以可靠地应用于准确预测广泛范围内含氧化合物中氢原子引起的α-氢抽象动力学。

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