化学
催化作用
甲醇
烯烃纤维
沸石
焦炭
路易斯酸
选择性
丙烯
环氧丙烷
有机化学
布朗斯特德-洛瑞酸碱理论
化学工程
共聚物
聚合物
环氧乙烷
工程类
作者
Irina Yarulina,Kristof De Wispelaere,Simon Bailleul,Joris Goetze,Mike Radersma,Edy Abou‐Hamad,Ina Vollmer,Maarten G. Goesten,Brahim Mezari,Emiel J. M. Hensen,Juan S. Martinez‐Espin,Magnus Mortén,Sharon Mitchell,Javier Pérez‐Ramírez,Unni Olsbye,Bert M. Weckhuysen,Véronique Van Speybroeck,Freek Kapteijn,Jorge Gascón
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2018-06-22
卷期号:10 (8): 804-812
被引量:244
标识
DOI:10.1038/s41557-018-0081-0
摘要
The combination of well-defined acid sites, shape-selective properties and outstanding stability places zeolites among the most practically relevant heterogeneous catalysts. The development of structure-performance descriptors for processes that they catalyse has been a matter of intense debate, both in industry and academia, and the direct conversion of methanol to olefins is a prototypical system in which various catalytic functions contribute to the overall performance. Propylene selectivity and resistance to coking are the two most important parameters in developing new methanol-to-olefin catalysts. Here, we present a systematic investigation on the effect of acidity on the performance of the zeolite 'ZSM-5' for the production of propylene. Our results demonstrate that the isolation of Brønsted acid sites is key to the selective formation of propylene. Also, the introduction of Lewis acid sites prevents the formation of coke, hence drastically increasing catalyst lifetime.
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