179
Aqueous-Phase Reforming and BioForming Process
9. D’Angelo, M., Ordomsky, V., van der Schaaf, J., Schouten, J., and Nijhuis, T., “Aqueous
phase reforming in a microchannel reactor: The effect of mass transfer on hydrogen
selectivity,” Catalysis Science & Technology, 3, 2834–2842 (2013).
10. Kunkes, E.L., Simonetti, D.A., West, R.M., Serrano-Ruiz, J.C., Gartner, C.A., and
Dumesic, J.A., Science, 322, 417–421 (2008).
11. Dunn, S., “Hydrogen futures: Toward a sustainable energy system,” International
Journal of Hydrogen Energy, 27, 235–264 (2002).
12. Huber, G., Iborra, S., and Corma, A., “Synthesis of transportation fuels from biomass:
Chemistry, catalysts, and engineering,” Chemical Reviews, 106, 4044–4098 (2006).
13. Soares, R., Simonetti, D., and Dumesic, J., Angewandte Chemie International Edition,
45, 3982–3985 (2006).
14. King, D., “Biomass-derived liquids distributed (aqueous phase) reforming,” 2012 DOE
Hydrogen and Fuel Cells Program Review, Pacific Northwest National Laboratory,
May 17, Richland, WA (2012).
15. Blommel, P.G. and Cortright, R.D., “Production of conventional liquid fuels from sugars,” a White Paper for European Platform on Biofuels, UK (2012).
16. Davda, R., Shabaker, J., Huber, G., Cortright, R., and Dumesic, J., “A review of catalytic issues and process conditions for renewable hydrogen and alkanes by aqueousphase reforming of oxygenated hydrocarbons over supported metal catalysts,” Applied
Catalysis B: Environmental, 56, 171–186 (2005).
17. Huber, G., Shabaker, J., and Dumesic, J., “Raney Ni-Sn catalyst for H 2 production from
biomass-derived hydrocarbons,” Science, 300, 2075–2077 (2003).
18. Vos, B., Poels, E., and Bliek, A., Journal of Catalysis, 198, 77 (2001).
19. Zhu, x., Huo, P., Zhang, Y., Cheng, D., and Liu, C., Applied Catalysis B: Environmental,
81, 132 (2008).
20. Zhang, J., xu, H., Jin, x., Ge, Q., and Li, W., Applied Catalysis A: General, 290, 87
(2005).
21. Alberton, A., Souza, M., and Schmal, M., Catalysis Today, 123, 257 (2007).
22. Bartholomew, C.H. and Pannell, R.B., Journal of Catalysis, 65, 390 (1980).
23. Mustard, D. and Bartholomew, C., Journal of Catalysis, 67, 186 (1981).
24. Lehnert, K. and Claus, P., Catalysis Communications, 9, 2543 (2008).
25. Wang, Z., Pan, Y., Dong, T., Zhu, x., Kan, T., Yuan, L., Torimoto, Y., Sadakata, M., and
Li, Q., Applied Catalysis A: General, 320, 24 (2007).
26. Minowa, T., Fang, Z., Ogi, T., and Varhegyi, G., Journal of Chemical Engineering of
Japan, 31, 131 (1998).
27. Trimm, D., “Coke formation and minimisation during steam reforming reactions,”
Catalysis Today, 37, 233–238 (1997).
28. Shabaker, J., Huber, G., and Dumesic, J., “Aqueous-phase reforming of oxygenated
hydrocarbons over Sn-modified Ni catalysts,” Journal of Catalysis, 222, 180–191
(2004).
29. Park, H.J., Kim, H.-D., Kim, T.-W., Jeong, K.-E., Chae, H.-J., Jeong, S.-Y., Chung,
Y.-M., Park, Y.-K., and Kim, C.-U. “Production of biohydrogen by aqueous phase
reforming of polyols over platinum catalysts supported on three-dimensionally bimodal
mesoporous carbon,” ChemSusChem, 5, 629–633 (2012).
30. Kunkes, E., Simonetti, D., Dumesic, J., Pyrz, W., Murillo, L., Chen, J., and Buttrey, D.,
Journal of Catalysis, 260, 164–177 (2008).
31. D’Angelo, M.F.N., Ordomsky, V., Paunovic, V., van der Schaaf, J., Schouten, J.C., and
Nijhuis, T.A., “Hydrogen production through aqueous-phase reforming of ethylene glycol in a washcoated microchannel,” ChemSusChem, 6, 1708–1716 (2013).
32. Huber, G., Chheda, J., Barrett, C., and Dumesic, J., “Chemistry: Production of liquid
alkanes by aqueous phase processing of biomass-derived carbohydrates,” Science, 308
(5727), 1446–1450 (2005).
Précédent

- 217/440

Suivant