合成气
醋酸
甲醇
乙烯
羰基化
催化作用
化学
烯烃纤维
选择性
双功能
有机化学
组合化学
一氧化碳
作者
Kuo Chen,Fenfang Wang,Yu Wang,Fuyong Zhang,Xinyu Huang,Jincan Kang,Qinghong Zhang,Ye Wang,Ye Wang,Ye Wang
出处
期刊:JACS Au
[American Chemical Society]
日期:2023-10-15
卷期号:3 (10): 2894-2904
被引量:16
标识
DOI:10.1021/jacsau.3c00463
摘要
The precise C-C coupling is a challenging goal in C1 chemistry. The conversion of methanol, a cheap and easily available C1 feedstock, into value-added and largely demanded olefins has been playing a game-changing role in the production of olefins. The current methanol-to-olefin (MTO) process, however, suffers from limited selectivity to a specific olefin. Here, we present a relay-catalysis route for the high-selective conversion of methanol to ethylene in syngas (H2/CO) typically used for methanol synthesis. A bifunctional catalyst composed of selectively dealuminated H-MOR zeolite and ZnO-TiO2, which implemented methanol carbonylation with CO to acetic acid and selective acetic acid hydrogenation to ethylene in tandem, offered ethylene selectivity of 85% at complete methanol conversion at 583 K. The selective removal of Brønsted acid sites in the 12-membered ring channel of H-MOR favors the selectivity of acetic acid in CH3OH carbonylation. The high capabilities of ZnO-TiO2 in the adsorption of acetic acid and the activation of H2 play key roles in selective hydrogenation of acetic acid to ethylene. Our work provides a promising relay-catalysis strategy for precise C-C coupling of C1 to C2 molecules.
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