首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Shape-Selective Catalysis Determined by the Volume of a Zeolite Cavity and the Reaction Mechanism for Propylene Production by the Conversion of Butene Using a Proton-Exchanged Zeolite
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Shape-Selective Catalysis Determined by the Volume of a Zeolite Cavity and the Reaction Mechanism for Propylene Production by the Conversion of Butene Using a Proton-Exchanged Zeolite

机译:由沸石腔体积决定的形状选择催化和质子交换沸石转化丁烯生产丙烯的反应机理

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摘要

The role of the zeolite cavity in the production of C3H6 from butene was investigated using various zeolites with pore structures of 8-, 10-, and 12-membered rings (MRs). The reaction mechanism is discussed on the basis of which octyl carbocations produced C3H6 at low conversions of butene. The selectivity for C3H6 was highly dependent on the volume of the zeolite cavity but not on the entrance pore diameter. The optimum cavity volumes of zeolites with 8-, 10-, and 12-MR entrance pore structures were similar, while the highest C3H6 selectivity among the zeolites was different. The most selective production of C3H6 can be accomplished by matching the volume of the specific octyl carbocation to that of the zeolite cavity. This concept can be employed to explain the selective production of C3H6 according to a proposed reaction model. Furthermore, the reaction mechanism for the production of C3H6 from C2H4 was also investigated at low conversion of C2H4. C3H6 was produced by the β-scission of the same specific octyl carbocations in the conversions of both butene and C2H4.
机译:使用具有8、10和12元环(MRs)的孔结构的各种沸石,研究了沸石腔在丁烯生产C3H6中的作用。在丁烯低转化率下,辛基碳正离子产生C3H6的基础上讨论了反应机理。 C 3 H 6的选择性高度取决于沸石腔的体积,而不取决于入口孔径。具有8、10和12 MR入口孔结构的沸石的最佳腔体积相似,而在这些沸石中最高的C3H6选择性却不同。可以通过使特定的辛基碳正离子化的体积与沸石腔体的体积相匹配来实现对C3H6的最有选择性的生产。根据提出的反应模型,该概念可用于解释C3H6的选择性生产。此外,还研究了在低C2H4转化率下由C2H4生成C3H6的反应机理。 C3H6是在丁烯和C2H4的转化中,通过相同的特定辛基碳正离子的β断裂而产生的。

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