氧合物
氢甲酰化
串联
脱氢
催化作用
化学
电化学
乙烯
碳氢化合物
化学工程
组合化学
有机化学
材料科学
铑
物理化学
复合材料
电极
工程类
作者
Akash N. Biswas,Lea R. Winter,Zhenhua Xie,Jingguang G. Chen
出处
期刊:JACS Au
[American Chemical Society]
日期:2023-01-13
卷期号:3 (2): 293-305
被引量:14
标识
DOI:10.1021/jacsau.2c00533
摘要
One possible solution to closing the loop on carbon emissions is using CO2 as the carbon source to generate high-value, multicarbon products. In this Perspective, we describe four tandem reaction strategies for converting CO2 into C3 oxygenated hydrocarbon products (i.e., propanal and 1-propanol), using either ethane or water as the hydrogen source: (1) thermocatalytic CO2-assisted dehydrogenation and reforming of ethane to ethylene, CO, and H2, followed by heterogeneous hydroformylation, (2) one-pot conversion of CO2 and ethane using plasma-activated reactions in combination with thermocatalysis, (3) electrochemical CO2 reduction to ethylene, CO, and H2, followed by thermocatalytic hydroformylation, and (4) electrochemical CO2 reduction to CO, followed by electrochemical CO reduction to C3 oxygenates. We discuss the proof-of-concept results and key challenges for each tandem scheme, and we conduct a comparative analysis of the energy costs and prospects for net CO2 reduction. The use of tandem reaction systems can provide an alternative approach to traditional catalytic processes, and these concepts can be further extended to other chemical reactions and products, thereby opening new opportunities for innovative CO2 utilization technologies.
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