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Entropy considerations in monomolecular cracking of alkanes on acidic zeolites

机译:酸性沸石上烷烃单分子裂解的熵考虑因素

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Compensation between adsorption entropies and enthalpies results in less than a two-fold variation in adsorption equilibrium constants for C3-C6 alkanes at temperatures relevant for monomolecular cracking;the size-independent activation energy for C-C bond activation in C3-C6 alkanes indicates that the marked increase in monomolecular cracking turnover rates observed with alkane chain size reflects a concurrent increase in activation entropies.Thermodynamic treatments for non-ideal systems rigorously describe confinement effects within zeolite channels and show that pre-exponential factors depend on solvation effects of the zeolite-host environment through variations in the thermodynamic activity of the zeolitic proton.Observed differences in rates and selectivities of monomolecular alkane activation with zeolite structure,after normalization to intrazeolitic concentrations,reflect differences in intrinsic rate constants.
机译:吸附熵和焓之间的补偿导致在与单分子裂解有关的温度下C3-C6烷烃的吸附平衡常数变化小于两倍; C3-C6烷烃中CC键活化的大小独立活化能表明随链烷烃链大​​小观察到的单分子裂解周转率的增加反映了活化熵的同时增加。非理想体系的热力学处理严格描述了沸石通道内的约束效应,并表明前指数因子取决于沸石-基质环境的溶剂化作用。观察到的沸石结构单分子烷烃活化速率和选择性的差异,归一化到沸石内浓度后,反映出固有速率常数的差异。

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