Hydrogen production by the water-gas shift reaction using CuNi/Fe 2 O 3 catalyst
Ajay Jha, Dae‐Woon Jeong, Jae‐Oh Shim, Won-Jun Jang, Yeol–Lim Lee, Chandrashekhar Vasant Rode, Hyun‐Seog Roh
Abstract
Ajay Jha, Dae‐Woon Jeong, Jae‐Oh Shim, Won-Jun Jang, Yeol–Lim Lee, Chandrashekhar Vasant Rode, Hyun‐Seog Roh
Abstract
Incorporation of both Cu and Ni together into the crystalline lattice of Fe 2 O 3 results in a significant increase in the catalytic activity and also suppresses the methanation reaction in the high-temperature water-gas shift (HT-WGS) reaction.
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Incorporation of both Cu and Ni together into the crystalline lattice of Fe 2 O 3 results in a significant increase in the catalytic activity and also suppresses the methanation reaction in the high-temperature water-gas shift (HT-WGS) reaction.
Key concepts: Water-gas shift reaction, Methanation, Catalysis, Hydrogen, Hydrogen production, Water gas, Materials science, Chemistry