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首页> 外文期刊>Journal of Catalysis >Adsorption thermodynamics of C1-C4 alcohols in H-FAU, H-MOR, H-ZSM-5, and H-ZSM-22
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Adsorption thermodynamics of C1-C4 alcohols in H-FAU, H-MOR, H-ZSM-5, and H-ZSM-22

机译:H1-FAU,H-MOR,H-ZSM-5和H-ZSM-22中C1-C4醇的吸附热力学

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The adsorption thermodynamics of C1-C4 primary alcohols in large-pore (H-FAU and H-MOR) and medium-pore (H-ZSM-5 and H-ZSM-22) zeolites is quantified using combined periodic DFT-D - statistical thermodynamic calculations. The increase of adsorption equilibrium coefficients with increasing carbon number of the alcohol and with decreasing pore size of the zeolite is attributed to the well-known dispersive van der Waals interactions. Although electrostatic interactions increase in the order: H-FAU < H-ZSM-5 approximate to H-MOR < H-ZSM-22, an interplay with other factors including zeolite acid strength, framework flexibility, and steric constraints globally renders non-dispersive interactions largely similar among the four zeolites. Also, the shape selectivity is probed for adsorption of n-butanol, i-butanol, 2-butanol, and t-butanol at the straight and zigzag channels of H-ZSM-5. A compensation between entropy and enthalpy. leads to a difference of at most two orders of magnitude in the adsorption equilibrium coefficient between the two channels. (C) 2014 Elsevier Inc. All rights reserved.
机译:使用组合的定期DFT-D-统计定量C1-C4伯醇在大孔(H-FAU和H-MOR)和中孔(H-ZSM-5和H-ZSM-22)沸石中的吸附热力学热力学计算。随着醇的碳数增加和沸石孔径的减小,吸附平衡系数的增加归因于众所周知的分散范德华相互作用。尽管静电相互作用按以下顺序增加:H-FAU

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