High-Performance MaZrOx (Ma = Cd, Ga) Solid-Solution Catalysts for CO2 Hydrogenation to Methanol

Journal Article (2019)
Author(s)

Jijie Wang (Chinese Academy of Sciences)

Chizhou Tang (Chinese Academy of Sciences)

G. Li (TU Delft - ChemE/Inorganic Systems Engineering)

Zhe Han (Chinese Academy of Sciences)

Zelong Li (Chinese Academy of Sciences)

Hailong Liu (Chinese Academy of Sciences)

Chengyong Feng (Chinese Academy of Sciences)

Can Li (Chinese Academy of Sciences)

Research Group
ChemE/Inorganic Systems Engineering
DOI related publication
https://doi.org/10.1021/acscatal.9b03449
More Info
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Publication Year
2019
Language
English
Research Group
ChemE/Inorganic Systems Engineering
Issue number
11
Volume number
9
Pages (from-to)
10253-10259

Abstract

Hydrogenation of CO2 to methanol utilizing the hydrogen from renewable energy sources offers a promising way to reduce CO2 emissions through the CO2 utilization as a carbon source. However, it is a challenge to convert CO2 to methanol with high activity and high methanol selectivity. Herein, we report a class of metal-oxide solid-solution catalysts: MaZrOx (Ma = Cd, Ga), which show a methanol selectivity up to 80% with the CO2 single pass conversion reaching 4.3%-12.4% under the reaction conditions of H2/CO2 = 3/1, 24※000 h-1, 5 MPa. Structural and electronic characterizations combined with denisty functional theory calculations suggest that the Ma and Zr components in MaZrOx (Ma = Cd, Ga) solid-solution catalysts show a strong synergetic effect, which enhances the H2 heterolytic dissociation and results in high activity and high methanol selectivity. The solid-solution catalyst with dual metal oxide components offers an approach for the selective hydrogenation of CO2 to chemicals.

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