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首页> 外文期刊>International Journal of Quantum Chemistry >The influence of pore structure on reaction mechanism of propylene dimerization in zeolite: A theoretical viewpoint
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The influence of pore structure on reaction mechanism of propylene dimerization in zeolite: A theoretical viewpoint

机译:孔隙结构对沸石丙烯二聚化反应机理的影响:理论观点

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Molecular sieves have been widely used in the petrochemical industry as environment-friendly catalysts. The pore structure is an important factor influencing the catalytic performance of the zeolite. In this work, a combined Our own N-layered Integrated molecular Orbital and Molecular mechanics method was used to study the mechanism of propylene dimerization in four zeolites (ZSM-5, BEA, MCM-22, and MOR) with different pore structures. Comparing the stepwise mechanism and the concerted mechanism, it is found that the two mechanisms compete with each other in the macroporous BEA, MCM-22, and MOR zeolites, and both mechanisms are possible. However, in ZSM-5 zeolite with medium pore size, the propylene dimerization reaction tends to proceed according to the stepwise mechanism. Furthermore, no matter which mechanism is adopted, the activation energy of propylene dimerization reaction in MCM-22 is the smallest in the four zeolites, indicating that its MWW-type structure (A framework type defined by the International Zeolite Association) may be the most favorable pore structure for the reaction and possesses the highest catalytic activity.
机译:分子筛已被广泛用于石化工业中作为环保型催化剂。孔隙结构是影响沸石催化性能的重要因素。在这项工作中,使用了一种具有不同孔结构的四沸石(ZSM-5,BEA,MCM-22和MOR)中丙烯二聚化的机制研究了不同的孔隙结构。比较逐步机构和齐齐机制,发现两个机制在大孔BEA,MCM-22和MOR沸石中彼此竞争,并且两个机构都是可能的。然而,在具有中孔径的ZSM-5沸石中,丙烯二聚化反应倾向于根据逐步机制​​进行。此外,无论采用哪种机制,MCM-22中丙烯二聚化反应的激活能量是四沸石中最小的,表明其MWW型结构(由国际沸石协会定义的框架类型)可能是最多的对反应的有利孔结构并具有最高的催化活性。

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