JOURNAL ARTICLE

Heterogeneously‐Catalyzed Hydrogenation of Carbon Dioxide to Methane using RuNi Bimetallic Catalysts

F. F. LangeUdo ArmbrusterAndreas Martin

Year: 2014 Journal:   Energy Technology Vol: 3 (1)Pages: 55-62   Publisher: Wiley

Abstract

Abstract One facet of the future energy supply can be covered by the use of synthetic natural gas (SNG) obtained from carbon dioxide and hydrogen using excess solar or wind energy to power water electrolysis. In this article, zirconia supported RuNi bimetallic catalysts were evaluated for this reaction at 300–400 °C, 10 bar, and space velocities up to 36 000 h −1 . In general, the reaction is close to the equilibrium; CO 2 conversion is complete, and SNG selectivity is close to 100 %. The studies have shown that Ru can be partially substituted by Ni to achieve similar product performance. Bimetallic catalysts with low loadings show the formation of alloys but higher loadings lead to segregation and agglomeration of Ni particles. The SNG productivity (at 36 000 h −1 ) reached on the best catalysts approximately 70 kg kg Ru −1 h −1 and 40 kg kg Ni −1 h −1 , respectively. Thus, a SNG space‐time‐yield of approximately 50–100 kg kg metal −1 h −1 (70–140 N m 3 h −1 ) can be obtained to this point.

Keywords:
Catalysis Bimetallic strip Methane Methanation Substitute natural gas Materials science Space velocity Carbon dioxide Syngas Biogas Hydrogen Carbon fibers Chemical engineering Inorganic chemistry Chemistry Selectivity Waste management Composite material Organic chemistry Composite number

Metrics

53
Cited By
1.55
FWCI (Field Weighted Citation Impact)
24
Refs
0.78
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Catalysts for Methane Reforming
Physical Sciences →  Chemical Engineering →  Catalysis
Carbon dioxide utilization in catalysis
Physical Sciences →  Chemical Engineering →  Process Chemistry and Technology
Catalysis for Biomass Conversion
Physical Sciences →  Engineering →  Biomedical Engineering

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