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Membrane-based reactive separations for process intensification during power generation Garshasbi A, Chen HH, Cao MY, Karagoz S, Ciora RJ, Liu PKT, Manousiouthakis VI, Tsotsis TT Catalysis Today, 331, 18, 2019 |
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Biomass gasification coupled with producer gas cleaning, bottling and HTS catalyst treatment for H2-rich gas production Patra TK, Sheth PN International Journal of Hydrogen Energy, 44(23), 11602, 2019 |
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Development of a new bi-functional steam reforming/water-gas shift catalyst for production of hydrogen in a membrane reactor Sun Y, Grigore M, Hla SS, Morpeth LD, Edwards JH International Journal of Hydrogen Energy, 41(24), 10335, 2016 |
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Novel sour water gas shift catalyst (SWGS) for lean steam to gas ratio applications Liu BA, Zong QY, Du X, Zhang ZX, Xiao TC, AlMegren H Fuel Processing Technology, 134, 65, 2015 |
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Comments on "Surface interfaces in low temperature water-gas shift: The metal oxide synergy, the assistance of co-adsorbed water, and alkali doping" by Jacobs and Davis, Int J Hydrogen Energy, 35 (2010) 3522-36 Meunier FC International Journal of Hydrogen Energy, 37(6), 5311, 2012 |
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High temperature water gas shift catalysts with alumina Popa T, Xu GQ, Barton TF, Argyle MD Applied Catalysis A: General, 379(1-2), 15, 2010 |
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Pyrophoricity and stability of copper and platinum based water-gas shift catalysts during oxidative shut-down/start-up operation Kam R, Scott J, Amal R, Selomulya C Chemical Engineering Science, 65(24), 6461, 2010 |
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LB energy-saving high temperature shift catalyst and its adsorption thermodynamics Wei L, Wang F, Liu Y, Chai Y Korean Journal of Chemical Engineering, 26(1), 42, 2009 |
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Synthesis of ternary mesoporous Cu-Zn-SiO2 materials at ambient temperature and their application for the water gas shift reaction Fang DR, Liu ZM, Zhang HM, Li JS, Liao WP Reaction Kinetics and Catalysis Letters, 92(1), 55, 2007 |
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Kinetics of the water-gas shift reaction over nanostructured copper-ceria catalysts Kusar H, Hocevar S, Levec J Applied Catalysis B: Environmental, 63(3-4), 194, 2006 |