[1]. Hou Xi. D., Zhao Y., and Xiang Zha W., “Effect of CeO2 Doping on Structure and Catalytic Performance of Co3O4 Catalyst for Low-Temperature CO Oxidation” Catal. Lett. Vol. 123, pp.321–326, 2008.##
[2]. Jacobs G. and Chenu E., “Water-gas shift: comparative screening of metal promoters for metal/ceria systems and role of the metal” Appl. Catal. A, Vol. 258, pp. 203–214, 2004.##
[3]. Trovarelli A., “Properties of ceria and ceria-containing materials” Catal. Rev. Vol. 38, pp. 439–520, 1996.##
[4]. Ladebeck J. R. and Wagner J. P. “Catalyst development for water gas shift”, In Handbook of Fuel Cells—Fundamentals, 2003.##
[5] A.Montoya J. and Romero Pascal G., “Methan reforming with CO2 over Ni/ZrO2-CeO2 catalysts prepared by sol-gel” Catal. Today, Vol. 63, pp.71-85, 2000.##
[6] Shaobin Wang and G. Q. Lu, “Reforming of methane with carbon dioxide over Ni/Al2O3 catalysts: effect of nickel precursor” Appl. Catal. A, Vol. 169, pp. 271-280, 1998.##
[7]. O. Sh. Joo, Wang K., and Jung D., “Dry reforming on the Al2O3 supported Ni catalyst” Bull, Korean Chem, Soc. Vol. 23, pp. 1149-1153, 2002.##
[8]. Łaniecki M., MałeckaGrycz M., and Domka F., “Water–gas shift reaction over sulfided molybdenum catalyst” Appl. Catal. A, 196, pp. 293–303, 2000.##
[9]. DeCanio E. C. and Storm D. A., Determination ofzero-valent molybdenum after moderate temperature reduction of alumina-supported catalysts, J. Catal. Vol. 130, 653, 1991.##
[10]. AgusHaryanto Sandun D. Fernando S. D., Filip Philip H., and Steele, “Hydrogen Production through the Water-Gas Shift Reaction: Thermodynamic Equilibrium versus Experimental Results overSupported Ni Catalysts” Energy &Fuels23, pp. Vol. 3097–3102, 2009.##
[11]. Sung Ho Kim, JiHye Chung, “SiO2/Ni and CeO2/Ni catalysts for single-stagewater gas shift reaction” Hydrogen Energy 35, pp. Vol. 3136 –3140, 2010.##
[12]. Chayakul K., Srithanratana T., and Hengrasmee S., “Catalytic activities of Re–Ni/CeO2 bimetallic catalysts for water gas shift reaction” Catal.Today, Vol. 175, pp. 420-429, 2011##
[13]. Callaghan C., Fishtik I., Datta R., Carpenter M., Chmielewski M., and Lugo A., “An improved microkinetic model for the water gas shift reaction on copper”, Surf. Sci. 541, pp. 21-30, 2003.##
[14]. AgusHaryanto, Producing Hydrogen through Water Gas ShiftReaction over Nickel Catalysts, Annual International Meeting Providence, Rhode Island, June 29 – July 2, 2008.##
[15]. Salehi Rad A. R., Behzadkhoshgouei M., Rezvani A. R. “Water gas shift reaction over Zn–Ni/SiO2 catalyst prepared from [Zn(H2O)6]2[Ni(NCS)6]•H2O/SiO2 precursor” Mol.Catal. A, Vol. 344, pp. 11– 17, 2011.##
[16]. Ralph R. and Hogarth M. P., “Catalysis for low temperature fuel cells. Part II: The anode challenges”, Platinum Met. Rev. Vol. 46, pp. 117–135, 2002.##
[17]. Si Y., Jiang R., Lin J.-C., Kunz H. R., and Fenton J. M,. “CO toleranceof carbon-supported platinum-ruthenium catalyst at elevated temperature and atmospheric pressure in a PEM fuel cell”, J. Electrochem. Soc. Vol. 151, pp. 1820–1824, 2004.##