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Chen, C. et al. Cu/CeO2 catalyst for water gas shift reaction: effect of CeO2 pretreatment.
The second one is a tritiated water-gas shift reaction.
Upadhye, A. A. et al. Plasmon-enhanced reverse water gas shift reaction over oxide supported Au catalysts.
Si, R. et al. Structure sensitivity of the low-temperature water gas shift reaction on Cu CeO2 catalysts.
Gokhale, A. A., Dumesic, J. A. & Mavrikakis, M. On the mechanism of low-temperature water gas shift reaction on copper.
Cui, Y. et al. Participation of interfacial hydroxyl groups in the water-gas shift reaction over Au/MgO catalysts.
Rodriguez, J. et al. Activity of CeOx and TiOx nanoparticles grown on Au (111) in the water-gas shift reaction.
Bollmann, L. et al. Effect of Zn addition on the water-gas shift reaction over supported palladium catalysts.
Tar was decomposed over the iron oxide catalysts followed by water gas shift reaction.
Heat from methane steam reforming and water gas shift reaction were considered in our model.
A micro scale glass reactor was designed, fabricated and characterized with Water Gas Shift Reaction (WGSR).
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