180
Water for Energy and Fuel Production
33. Serrano-Ruiz, J. and Dumesic, J., “Catalytic production of liquid hydrocarbon transportation fuels,” in Guczi, L. and Erdohelyi, A. (eds.), Catalysis for Alternative Energy
Generation. Springer, New York, pp. 29–56 (2012).
34. Wen, G., xu, Y., Ma, H., xu, Z., and Tian, Z., “Production of hydrogen by aqueous phase
reforming of glycerol,” International Journal of Hydrogen Energy, 33, 6657–6666 (2008).
35. Boonyanuwat, A., Jentys, A., and Lercher, J.A., “Hydrogen production by aqueous
phase reforming of glycerine on noble supported catalysts,” DGMK-Tagungsbericht,
October 4–6, Dresden, Germany (2006).
36. Luo, N., Fu, x., Cao, F., xiao, T., and Edwards, P., “Glycerol aqueous phase reforming
for hydrogen generation over Pt catalyst—Effect of catalyst composition and reaction
conditions,” Fuel, 87, 3483–3489 (2008).
37. Valenzuela, M., Jones, C., and Agrawal, P., “Batch aqueous phase reforming of woody
biomass,” Energy & Fuels, 20, 1744–1752 (2006).
38. Chu, x., Liu, J., Sun, B., Dai, R., Pei, Y., Qiao, M., and Fan, K., “Aqueous phase reforming of ethylene glycol on Co/ZnO catalysts prepared by the coprecipitation method,”
Journal of Molecular Catalysis A: Chemical, 335, 129–135 (2011).
39. Wen, G., xu, Y., xu, Z., and Tian, Z., “Characterization and catalytic properties of the
Ni/Al2O3 catalysts for aqueous phase reforming of glucose,” Catalysis Letters, 129,
250–257 (2009).
40. Ni, M., Leung, D.Y.C., Leung, M.K.H., and Sumathy, K., Fuel Processing Technology,
87, 461 (2006).
41. Davda, R. and Dumesic, J., “Renewable hydrogen by aqueous phase reforming of
glucose,” Chemical Communications, 36 (2004).
42. Tanksale, A., Wong, Y., Beltramini, J.N., and Lu, G.Q., “Hydrogen generation from
liquid phase catalytic reforming of sugar solutions using metal-supported catalysts,”
International Journal of Hydrogen Energy, 32, 717 (2007).
43. xu, Y.P., Tian, Z.J., Wen, G.D., xu, Z.S., Qu, W., and Lin, L.W., Chemistry Letters, 35,
216 (2006).
44. Manfro, R., Pires, T., Ribeiro, N., and Souza, M., “Aqueous phase reforming of glycerol
using Ni-Cu catalysts prepared from hydrotalcite like precursors,” Catalysis Science &
Technology, 3, 1278–1287 (2013).
45. Tungal, R. and Shende, R., “Subcritical aqueous phase reforming of wastepaper for
biocrude and H 2 generation,” Energy & Fuels, 27 (6), 3194–3203 (2013).
46. Manfro, R., de Costa, A., Ribeiro, N., and Souza, M., “Hydrogen production by aqueous
phase reforming of glycerol over nickel catalysts supported on CeO 2 ,” Fuel Processing
Technology, 92, 330–335 (2013).
47. Vaidya, P. and Rodrigues, A., “Glycerol reforming for hydrogen production: A review,”
Chemical Engineering & Technology, 32, 1463–1469 (2009).
48. Shabaker, J., Davda, R., Huber, G., Cortright, R., and Dumesic, J., “Aqueous phase
reforming of methanol and ethylene glycol over alumina-supported platinum catalysts,”
Journal of Catalysis, 215, 344–352 (2003).
49. Shabaker, J., Huber, G., Cortright, R., and Dumesic, J., “Aqueous-phase reforming of
ethylene glycol over supported platinum catalysts,” Catalysis Letters, 88, 1–8 (2003).
50. Cruz, I., Ribeiro, N., Aranda, D., and Souza, M., “Hydrogen production by aqueousphase reforming of ethanol over nickel catalysts prepared from hydrotalcite precursors,”
Catalysis Communications, 9, 2606–2611 (2008).
51. Behr, A., Eilting, J., Irawadi, K., Leschinski, J., and Lindner, F., “Improved utilization
of renewable resources: New important derivatives of glycerol,” Green Chemistry, 10,
13–30 (2008).
52. Iriondo, A., Barrio, V., Cambra, J., Arias, P., Güemez, M., Navarro, R., Sanchez-Sanchez,
M., and Fierro, J., “Hydrogen production from glycerol over nickel catalysts supported
on Al 2 O 3 modified by Mg, Zr, Ce or La,” Topics in Catalysis, 49, 46–58 (2008).
Water for Energy and Fuel Production
33. Serrano-Ruiz, J. and Dumesic, J., “Catalytic production of liquid hydrocarbon transportation fuels,” in Guczi, L. and Erdohelyi, A. (eds.), Catalysis for Alternative Energy
Generation. Springer, New York, pp. 29–56 (2012).
34. Wen, G., xu, Y., Ma, H., xu, Z., and Tian, Z., “Production of hydrogen by aqueous phase
reforming of glycerol,” International Journal of Hydrogen Energy, 33, 6657–6666 (2008).
35. Boonyanuwat, A., Jentys, A., and Lercher, J.A., “Hydrogen production by aqueous
phase reforming of glycerine on noble supported catalysts,” DGMK-Tagungsbericht,
October 4–6, Dresden, Germany (2006).
36. Luo, N., Fu, x., Cao, F., xiao, T., and Edwards, P., “Glycerol aqueous phase reforming
for hydrogen generation over Pt catalyst—Effect of catalyst composition and reaction
conditions,” Fuel, 87, 3483–3489 (2008).
37. Valenzuela, M., Jones, C., and Agrawal, P., “Batch aqueous phase reforming of woody
biomass,” Energy & Fuels, 20, 1744–1752 (2006).
38. Chu, x., Liu, J., Sun, B., Dai, R., Pei, Y., Qiao, M., and Fan, K., “Aqueous phase reforming of ethylene glycol on Co/ZnO catalysts prepared by the coprecipitation method,”
Journal of Molecular Catalysis A: Chemical, 335, 129–135 (2011).
39. Wen, G., xu, Y., xu, Z., and Tian, Z., “Characterization and catalytic properties of the
Ni/Al2O3 catalysts for aqueous phase reforming of glucose,” Catalysis Letters, 129,
250–257 (2009).
40. Ni, M., Leung, D.Y.C., Leung, M.K.H., and Sumathy, K., Fuel Processing Technology,
87, 461 (2006).
41. Davda, R. and Dumesic, J., “Renewable hydrogen by aqueous phase reforming of
glucose,” Chemical Communications, 36 (2004).
42. Tanksale, A., Wong, Y., Beltramini, J.N., and Lu, G.Q., “Hydrogen generation from
liquid phase catalytic reforming of sugar solutions using metal-supported catalysts,”
International Journal of Hydrogen Energy, 32, 717 (2007).
43. xu, Y.P., Tian, Z.J., Wen, G.D., xu, Z.S., Qu, W., and Lin, L.W., Chemistry Letters, 35,
216 (2006).
44. Manfro, R., Pires, T., Ribeiro, N., and Souza, M., “Aqueous phase reforming of glycerol
using Ni-Cu catalysts prepared from hydrotalcite like precursors,” Catalysis Science &
Technology, 3, 1278–1287 (2013).
45. Tungal, R. and Shende, R., “Subcritical aqueous phase reforming of wastepaper for
biocrude and H 2 generation,” Energy & Fuels, 27 (6), 3194–3203 (2013).
46. Manfro, R., de Costa, A., Ribeiro, N., and Souza, M., “Hydrogen production by aqueous
phase reforming of glycerol over nickel catalysts supported on CeO 2 ,” Fuel Processing
Technology, 92, 330–335 (2013).
47. Vaidya, P. and Rodrigues, A., “Glycerol reforming for hydrogen production: A review,”
Chemical Engineering & Technology, 32, 1463–1469 (2009).
48. Shabaker, J., Davda, R., Huber, G., Cortright, R., and Dumesic, J., “Aqueous phase
reforming of methanol and ethylene glycol over alumina-supported platinum catalysts,”
Journal of Catalysis, 215, 344–352 (2003).
49. Shabaker, J., Huber, G., Cortright, R., and Dumesic, J., “Aqueous-phase reforming of
ethylene glycol over supported platinum catalysts,” Catalysis Letters, 88, 1–8 (2003).
50. Cruz, I., Ribeiro, N., Aranda, D., and Souza, M., “Hydrogen production by aqueousphase reforming of ethanol over nickel catalysts prepared from hydrotalcite precursors,”
Catalysis Communications, 9, 2606–2611 (2008).
51. Behr, A., Eilting, J., Irawadi, K., Leschinski, J., and Lindner, F., “Improved utilization
of renewable resources: New important derivatives of glycerol,” Green Chemistry, 10,
13–30 (2008).
52. Iriondo, A., Barrio, V., Cambra, J., Arias, P., Güemez, M., Navarro, R., Sanchez-Sanchez,
M., and Fierro, J., “Hydrogen production from glycerol over nickel catalysts supported
on Al 2 O 3 modified by Mg, Zr, Ce or La,” Topics in Catalysis, 49, 46–58 (2008).
