化学
六甲苯
烯烃纤维
丙烯
甲醇
沸石
催化作用
侧链
光化学
分子
有机化学
聚合物
苯
作者
Kristof De Wispelaere,Karen Hemelsoet,Michel Waroquier,Veronique Van Speybroeck
标识
DOI:10.1016/j.jcat.2013.04.015
摘要
The methanol to olefins process is an alternative for oil-based production of ethene and propene. However, detailed information on the reaction mechanisms of olefin formation in different zeolite is lacking. Herein, a first-principle kinetic study allows elucidating the importance of a side-chain mechanism during methanol conversion in H-SAPO-34. Starting from the experimentally observed hexamethylbenzene, a full low-barrier catalytic cycle for ethene and propene formation is found. The olefin elimination steps exhibit low free energy barriers due to a subtle interplay between a sp3 carbon center of the organic intermediate, stabilizing non-bonding interactions and assisting water molecules in the zeolite material.
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