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Schweitzer, N. M. et al. High activity carbide supported catalysts for water gas shift.
The scheme consists of CH4 total oxidation and reforming, the water gas shift and reverse water gas shift reactions, and H2 and CO post-combustion reactions.
This review comprehensively discusses two processes: reverse water gas shift (RWGS) and CO2 hydrogenation to hydrocarbons.
Tar was decomposed over the iron oxide catalysts followed by water gas shift reaction.
The syngas will be then converted into hydrogen by water gas shift reaction.
Simplified reaction kinetic model, including glucose decomposition, water gas shift reaction and methanation reaction, was used.
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The second one is a tritiated water-gas shift reaction.
Sabnis, K. D. et al. Water-gas shift catalysis over transition metals supported on molybdenum carbide.
Zhai, Y. et al. Alkali-stabilized Pt-OHx specatalyzealow-temperatureature water-gas shift reactions.
Currently, industrial conversion of CO2 to CO occurs through the reverse water-gas shift (rWGS) reaction.
Further reaction of CO with steam over water-gas shift catalysts produces additional hydrogen plus CO2.
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