催化作用
甲苯
化学
选择性
甲醇
沸石
格式化
空间速度
二甲苯
吸附
氢
无机化学
有机化学
作者
Xin Shang,Hongying Zhuo,Qiao Han,Xiaofeng Yang,Guangjin Hou,Guodong Liu,Xiong Su,Yanqiang Huang,Tao Zhang
标识
DOI:10.1002/ange.202309377
摘要
Abstract Selective synthesis of specific value‐added aromatics from CO 2 hydrogenation is of paramount interest for mitigating energy and climate problems caused by CO 2 emission. Herein, we report a highly active composite catalyst of ZnZrO and HZSM‐5 (ZZO/Z5‐SG) for xylene synthesis from CO 2 hydrogenation via a coupling reaction in the presence of toluene, achieving a xylene selectivity of 86.5 % with CO 2 conversion of 10.5 %. A remarkably high space time yield of xylene could reach 215 mg g cat −1 h −1 , surpassing most reported catalysts for CO 2 hydrogenation. The enhanced performance of ZZO/Z5‐SG could be due to high dispersion and abundant oxygen vacancies of the ZZO component for CO 2 adsorption, more feasible hydrogen activation and transfer due to the close interaction between the two components, and enhanced stability of the formate intermediate. The consumption of methoxy and methanol from the deep hydrogenation of formate by introduced toluene also propels an oriented conversion of CO 2 .
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