100
Water for Energy and Fuel Production
21. Watanabe, M., Yamashita, H., Chen, x., Yamanaka, J., Katobuki, M., Suzuki, H., and
Uchida, H., “Nano-sized Ni particles on hollow alumina ball: Catalysts for hydrogen
production,” Applied Catalysis B: Environmental, 71, 237–245 (2007).
22. Bradford, M.C.J. and Vannice, M.A., “Catalytic reforming of methane with carbon dioxide
over nickel catalysts. II. Reaction kinetics,” Applied Catalysis A, 142 (1), 97–122 (1996).
23. Bradford, M.C.J. and Vannice, M.A., “CO 2 reforming of CH 4 ,” Catalysis Reviews—
Science and Engineering, 41 (1), 1–42 (1999).
24. Kechagiopoulos, P., Voutetakis, S., Lemonidou, A., and Vassalos, I., “Hydrogen production via steam reforming of the aqueous phase of bio-oil in a fixed bed reactor,” Energy &
Fuels, 20, 2155–2163 (2006).
25. Lucas, C., Szewczyk, D., Blasiak, W., and Mochida, S., “High temperature air and steam
gasification of densified biofuels,” Biomass & Bioenergy, 27, 563–575 (2004).
26. Ye, T., Yuan, L., Chen, Y., Kan, T., Tu, J., Zhu, x., Torimoto, Y., Yamamoto, M., and
Li, Q., “High efficient production of hydrogen from bio-oil using low-temperature
electrochemical catalytic reforming approach over NiCuZn-Al2O3 catalyst,” Catalysis
Letters, 127, 323–333 (2009).
27. Kumabe, K., Hanaoka, T., Fujimoto, S., Minowa, T., and Sakanishi, K., “Co-gasification
of woody biomass and coal with air and steam,” Fuel, 86, 684–689 (2007).
28. Weiland, N., Means, N., and Morreale, B., “Kinetics of coal/biomass co-gasification,”
NETL 2010 Workshop on Multiphase Flow Science, May 4–6, Pittsburgh, PA (2010).
29. Sami, M., Annamalai, K., and Wooldridge, M., “Co-firing of coal and biomass fuel
blends,” Progress in Energy and Combustion Science, 27, 171–214 (2001).
30. Seo, M., Goo, J., Kim, S., Lee, S., and Choi, Y., “Gasification characteristics of coal/
biomass blend in a dual circulating fluidized bed reactor,” Energy & Fuels, 24 (5), 3108–
3118 (2010).
31. Yamada, T., Akano, M., Hashimoto, H., Suzuki, T., Maruyama, T., Wang, Q., and
Kamide, M., “Steam gasification of coal biomass briquettes,” Nippon Enerugi Gakkai
Sekitan Kagaku Kaigi Happyo Ronbunshu, 39, 185–186 (2002).
32. Ji, K., Song, B., Kim, Y., Kim, B., Yang, W., Choi, Y., and Kim, S., “Steam gasification of low rank fuel-biomass, coal and sludge mixture in a small scale fluidized bed,”
Proceedings of the European Combustion Meeting, April 14–17, Vienna, Austria (2009).
33. Elshout, R., “Hydrogen production by steam reforming,” Chemical Engineering, 117,
34–38 (2010).
34. Meijer, R., Kapteijn, F., and Moulijn, J.A., “Kinetics of the alkali-carbonate catalysed
gasification of carbon: H 2 O gasification,” Fuel, 73 (5), 723–730 (1994).
35. Sørensen, L.H., Henriksen, U., Risnes, H., Poulsen, K.T., Hansen, L.K., Olsen, A.,
and Rathman, O., “Straw—H 2 O gasification kinetics,” Determination and discussion,
Nordic Seminar on Thermochemical Conversion of Solid Fuels, December 3, Chalmers
University of Technology, Sweden (1997).
36. Wei, J. and Iglesia, E., “Isotopic and kinetic assessment of the mechanism of reactions
of CH 4 with CO 2 or H 2 O to form synthesis gas and carbon on nickel catalysts,” Journal
of Catalysis, 224 (2), 370–383 (2004).
37. Rostrup-Nielsen, J.R., Hansen, J., and Bak, H. “CO 2 -reforming of methane over transition metals,” Journal of Catalysis, 144 (1), 38–49 (1993).
38. Li, J. and van Heiningen, A.R.P., “Kinetics of gasification of black liquor char by steam,”
Industrial & Engineering Chemistry Research, 30 (7), 1594–1601 (1991).
39. Jackson, S.D., Thomson, S.J., and Webb, G., “Carbonaceous deposition associated with
catalytic steam reforming of hydrocarbons over nickel alumina catalysts,” Journal of
Catalysis, 70, 249–263 (1981).
40. Van Heek K., “General aspects and engineering principles for technical application
of coal gasification,” in Figuieiredo, J.L. and Moulijn, J.A. (eds.), Carbon and Coal
Gasification: Science and Technology. Springer, Alvor, Portugal, 383–402 (1986).
Water for Energy and Fuel Production
21. Watanabe, M., Yamashita, H., Chen, x., Yamanaka, J., Katobuki, M., Suzuki, H., and
Uchida, H., “Nano-sized Ni particles on hollow alumina ball: Catalysts for hydrogen
production,” Applied Catalysis B: Environmental, 71, 237–245 (2007).
22. Bradford, M.C.J. and Vannice, M.A., “Catalytic reforming of methane with carbon dioxide
over nickel catalysts. II. Reaction kinetics,” Applied Catalysis A, 142 (1), 97–122 (1996).
23. Bradford, M.C.J. and Vannice, M.A., “CO 2 reforming of CH 4 ,” Catalysis Reviews—
Science and Engineering, 41 (1), 1–42 (1999).
24. Kechagiopoulos, P., Voutetakis, S., Lemonidou, A., and Vassalos, I., “Hydrogen production via steam reforming of the aqueous phase of bio-oil in a fixed bed reactor,” Energy &
Fuels, 20, 2155–2163 (2006).
25. Lucas, C., Szewczyk, D., Blasiak, W., and Mochida, S., “High temperature air and steam
gasification of densified biofuels,” Biomass & Bioenergy, 27, 563–575 (2004).
26. Ye, T., Yuan, L., Chen, Y., Kan, T., Tu, J., Zhu, x., Torimoto, Y., Yamamoto, M., and
Li, Q., “High efficient production of hydrogen from bio-oil using low-temperature
electrochemical catalytic reforming approach over NiCuZn-Al2O3 catalyst,” Catalysis
Letters, 127, 323–333 (2009).
27. Kumabe, K., Hanaoka, T., Fujimoto, S., Minowa, T., and Sakanishi, K., “Co-gasification
of woody biomass and coal with air and steam,” Fuel, 86, 684–689 (2007).
28. Weiland, N., Means, N., and Morreale, B., “Kinetics of coal/biomass co-gasification,”
NETL 2010 Workshop on Multiphase Flow Science, May 4–6, Pittsburgh, PA (2010).
29. Sami, M., Annamalai, K., and Wooldridge, M., “Co-firing of coal and biomass fuel
blends,” Progress in Energy and Combustion Science, 27, 171–214 (2001).
30. Seo, M., Goo, J., Kim, S., Lee, S., and Choi, Y., “Gasification characteristics of coal/
biomass blend in a dual circulating fluidized bed reactor,” Energy & Fuels, 24 (5), 3108–
3118 (2010).
31. Yamada, T., Akano, M., Hashimoto, H., Suzuki, T., Maruyama, T., Wang, Q., and
Kamide, M., “Steam gasification of coal biomass briquettes,” Nippon Enerugi Gakkai
Sekitan Kagaku Kaigi Happyo Ronbunshu, 39, 185–186 (2002).
32. Ji, K., Song, B., Kim, Y., Kim, B., Yang, W., Choi, Y., and Kim, S., “Steam gasification of low rank fuel-biomass, coal and sludge mixture in a small scale fluidized bed,”
Proceedings of the European Combustion Meeting, April 14–17, Vienna, Austria (2009).
33. Elshout, R., “Hydrogen production by steam reforming,” Chemical Engineering, 117,
34–38 (2010).
34. Meijer, R., Kapteijn, F., and Moulijn, J.A., “Kinetics of the alkali-carbonate catalysed
gasification of carbon: H 2 O gasification,” Fuel, 73 (5), 723–730 (1994).
35. Sørensen, L.H., Henriksen, U., Risnes, H., Poulsen, K.T., Hansen, L.K., Olsen, A.,
and Rathman, O., “Straw—H 2 O gasification kinetics,” Determination and discussion,
Nordic Seminar on Thermochemical Conversion of Solid Fuels, December 3, Chalmers
University of Technology, Sweden (1997).
36. Wei, J. and Iglesia, E., “Isotopic and kinetic assessment of the mechanism of reactions
of CH 4 with CO 2 or H 2 O to form synthesis gas and carbon on nickel catalysts,” Journal
of Catalysis, 224 (2), 370–383 (2004).
37. Rostrup-Nielsen, J.R., Hansen, J., and Bak, H. “CO 2 -reforming of methane over transition metals,” Journal of Catalysis, 144 (1), 38–49 (1993).
38. Li, J. and van Heiningen, A.R.P., “Kinetics of gasification of black liquor char by steam,”
Industrial & Engineering Chemistry Research, 30 (7), 1594–1601 (1991).
39. Jackson, S.D., Thomson, S.J., and Webb, G., “Carbonaceous deposition associated with
catalytic steam reforming of hydrocarbons over nickel alumina catalysts,” Journal of
Catalysis, 70, 249–263 (1981).
40. Van Heek K., “General aspects and engineering principles for technical application
of coal gasification,” in Figuieiredo, J.L. and Moulijn, J.A. (eds.), Carbon and Coal
Gasification: Science and Technology. Springer, Alvor, Portugal, 383–402 (1986).
