首页> 外文期刊>Chemical Physics Letters >Kinetic simulation of the thermal degradation of phenethyl phenyl ether, a model compound for the β-O-4 linkage in lignin
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Kinetic simulation of the thermal degradation of phenethyl phenyl ether, a model compound for the β-O-4 linkage in lignin

机译:木质素中β-O-4键合模型化合物苯乙基苯基醚的热降解动力学模拟

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摘要

Employing kinetic Monte Carlo, we simulated the radical chain propagation of the pyrolysis of phenethyl phenyl ether (PPE), which serves as a model compound for the β-O-4 linkage in lignin. The input rate constants were obtained with transition state theory based on density functional calculations. Pre- and postcomplexes for hydrogen abstraction and β-scission reactions were included assuming thermal equilibrium. Individual rate constants compare well with experimental estimates. The calculated overall α/β-product selectivity is qualitatively in agreement with experiment. The simulation revealed that the carbon-carbon phenyl shift reaction for the β-PPE radical is part of the pyrolysis mechanism.
机译:利用动力学蒙特卡洛,我们模拟了苯乙基苯基醚(PPE)的热解的自由基链传播,PPE是木质素中β-O-4键的模型化合物。使用基于密度泛函计算的过渡态理论获得输入速率常数。假设热平衡,则包括用于氢提取和β-断裂反应的前复合物和后复合物。各个速率常数与实验估算值比较好。计算得出的总α/β-产物选择性与实验定性一致。模拟表明,β-PPE自由基的碳-碳苯基转移反应是热解机理的一部分。

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