Rational Design of Novel Reaction Pathways and Tailor-Made Catalysts for Value-Added Chemicals Synthesis from CO2 Hydrogenation

被引:12
|
作者
Tsubak, Noritatsu [1 ]
Wang, Yang [1 ]
Yang, Guohui [1 ]
He, Yinglou [1 ]
机构
[1] Univ Toyama, Sustainable Technol Ctr, Sch Engn, Dept Appl Chem, 3190 Gofuku, Toyama 9308555, Japan
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
CO2; conversion; Catalyst design; Novel reaction pathway; TEMPERATURE METHANOL SYNTHESIS; SUPPORTED PALLADIUM CATALYSTS; CARBON-DIOXIDE; SELECTIVE CONVERSION; CAPSULE CATALYST; CU/ZNO CATALYSTS; INDIUM OXIDE; OLEFINS; SYNGAS; ISOPARAFFINS;
D O I
10.1246/bcsj.20220344
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The highly effective transformation of CO2 into targeted chemicals has attracted significant attention due to greenhouse gas utilization and value-added chemical synthesis functions. Among all of the proposed CO2 transformation pathways, e.g., electrolytic CO2 reduction, photocatalytic CO2 conversion, and thermal-catalytic CO2 utilization, the latter, especially the thermal-catalytic hydrogenation process with renewable energy-driven H2 supply, is the most promising strategy owing to its high efficiency, fast reaction rate, controllable product selectivity, and industrial application potential. In recent years, our research group has made great efforts to realize various chemical syntheses from CO2 hydrogenation technology, such as production of methanol, ethanol, liquid petroleum gas (LPG), alkenes, aromatics (especially para-xylene, PX), etc. In this account, we summarize the main achievements of our labo-ratory in the rational design of novel heterogeneous catalysts and innovative reaction pathways for CO2 hydrogenation, in-cluding reaction pathway design for new low-temperature methanol synthesis, catalytic metal-surface interaction tailoring to boost methanol synthesis performance, tandem reaction network fabrication for the synthesis of ethanol, LPG, or aro-matics, a capsule catalyst concept for tandem reaction, etc. In this account, we want to inspire new ideas and methodologies for the rational design of novel catalysts and reaction pathways for CO2 hydrogenation into value-added chemicals.
引用
收藏
页码:291 / 302
页数:12
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