Heterogeneous Catalytic Systems for Carbon Dioxide Hydrogenation to Value-Added Chemicals

被引:12
作者
Mirzakhani, Sara [1 ,2 ]
Yin, Ben Hang [3 ,4 ]
Masteri-Farahani, Majid [5 ]
Yip, Alex C. K. [1 ]
机构
[1] Univ Canterbury, Dept Chem & Proc Engn, Christchurch, New Zealand
[2] Univ Canterbury, Sch Phys & Chem Sci, Christchurch, New Zealand
[3] Victoria Univ Wellington, Robinson Res Inst, Fac Engn, Wellington, New Zealand
[4] MacDiarmid Inst Adv Mat & Nanotechnol, Wellington, New Zealand
[5] Kharazmi Univ, Fac Chem, Tehran, Iran
关键词
CO2; hydrogenation; heterogeneous catalysis; formate; methanol; C2+ hydrocarbons; SELECTIVE CO2 HYDROGENATION; METHANOL SYNTHESIS; ELECTROCATALYTIC CONVERSION; HOMOGENEOUS HYDROGENATION; FE-CO/K-AL2O3; CATALYSTS; RUTHENIUM NANOPARTICLES; BIFUNCTIONAL CATALYST; BIMETALLIC CATALYSTS; HIGHER ALCOHOLS; LOWER OLEFINS;
D O I
10.1002/cplu.202300157
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Utilizing renewable energy to hydrogenate carbon dioxide into fuels eliminates massive CO2 emissions from the atmosphere and diminishes our need for using fossil fuels. This review presents the most recent developments for designing heterogeneous catalysts for the hydrogenation of CO2 to formate, methanol, and C2+ hydrocarbons. Thermodynamic challenges and mechanistic insights are discussed, providing a strong foundation to propose a suitable catalyst. The main body of this review focuses on nanostructured catalysts for constructing efficient heterogeneous systems. The most important factors affecting catalytic performance are highlighted, including active metals, supports and promoters that can potentially be used. The summary of the results and the outlook are presented in the final section. During the past few decades, heterogeneous CO2 hydrogenation has gained much attention and made tremendous progress. Thus, many highly efficient catalysts have been studied to discover their active sites and provide mechanistic insights. This paper summarizes recent advances in CO2 hydrogenation and its conversion into various hydrocarbons such as formate, methanol, and C2+ products. As for formate production, Au and Ru nanocatalysts show superior activity. However, considering the catalyst cost, Cu-based catalysts have an excellent prospect for methanol production, among other catalysts. Ultra-small nanoparticles and nanoclusters appear promising to provide highly active cost-effective catalysts. A growing number of researchers are investigating the possibility of directly synthesizing C2+ products through CO2 hydrogenation. The major challenge in producing heavy hydrocarbons is breaking the ASF limitations, which have been achieved over bifunctional catalysts using zeolites. Using suitable support and promoter can lead to a superior activity, ascribed to structural, electronic, and chemical promotional effects.
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页数:10
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