289
Fuel Production by Supercritical Water
81. Sasaki, M., Fang, Z., Fukushima, Y., Adschiri, T., and Arai, K.,“Dissolution and
hydrolysis of cellulose in sub-critical and supercritical water,” Industrial & Engineering
Chemistry Research, 39, 2883–2890 (2000).
82. Wahyudiono, Shiraishi, T., Sasaki, M., and Goto, M., “Non catalytic liquefaction of
bitumen with hydrothermal/solvothermal process,” The Journal of Supercritical Fluids,
60, 127–136 (2011).
83. Cheng, L., Zhang, R., and Bi, J., “Pyrolysis of a low rank coal in sub and supercritical
water,” Fuel Processing Technology, 85 (8–10), 921–932 (2004).
84. Vostrikov, A., Psarov, S., Dubov, D., Fedyaeva, O., and Sokol, M., “Kinetics of coal
conversion in supercritical water,” Energy & Fuels, 21, 2840–2845 (2007).
85. Kumar, S. and Gupta, R., “Biocrude production from switchgrass using supercritical
water,” Energy & Fuels, 23, 5151–5159 (2009).
86. Kim, I.C., Park, S.D., and Kim, S., “Effects of sulfates on the decomposition of cellobiose in supercritical water,” Chemical Engineering Process, 43, 997–1005 (2004).
87. Mitsubishi Material Corp., “Supercritical water cracks residue oil,” Chemical
Engineering, 14 (September 2007).
88. Ayhan, D., “Hydrogen-rich gas from fruit shells via supercritical water extraction,”
International Journal of Hydrogen Energy, 29, 1237–1243 (2004).
89. Nonaka, H., “Development of liquefaction process of coal and biomass in supercritical
water,” Fuel and Energy Abstracts, 39 (1), 18 (1998).
90. Matsumara, Y., Nonaka, H., Yokura, H., Tsutsumi, A., and Yoshida, K., “Co-liquefaction
of coal and cellulose in supercritical water,” Fuel, 78 (9), 1049–1056 (1999).
91. Demirbas, A., “Hydrogen production from biomass via supercritical water extraction,”
Energy Sources, 27, 1409–1417 (2005).
92. Phillip, E., “Organic chemical reactions in supercritical water,” Chemical Reviews, 99,
603–621 (1999).
93. Duan, P. and Savage, P., “Upgrading of crude algal bio oil in supercritical water,”
Bioresource Technology, 102 (2), 1899–1906 (2011).
94. Duan, P. and Savage, P., “Catalytic hydrotreatment of crude algal bio-oil in supercritical
water,” Applied Catalysis B: Environmental, 104 (1/2), 136–143 (2011).
95. Onsari, K., Prasassarakich, P., and Ngamprasertsith, S., “Co-liquefaction of coal and
used tire in supercritical water,” Energy and Power Engineering, 2, 95–102 (2010).
96. Sunphorka, S., Prasassarakich, P., and Ngamprasertsith, S., “Co-liquefaction of coal
and plastic mixture in supercritical water,” The 5th Mathematics and Physical Sciences
Graduate Congress, Chulalongkorn University, Thailand, December 7–9, 2009 (2011).
97. Nonaka, H., Matsumura, Y., Tsutsumi, A., Yoshida, K., Matsuno, Y., and Inaba, A.,
Development of liquefaction process of coal and biomass in supercritical water,” Sekitan
Kagaku Kaigi Happyo Ronbunshu, 33, 73–76 (1996).
98. Veski, R., Palu, V., and Kruusement, K., “Co-liquefaction of kukersite oil shale and pine
wood in supercritical water,” Oil Shale, 23 (3), 236–248 (2006).
99. Yokura, H., Nonaka, H., Matsumura, Y., Tsutsumi, A., and Yoshida, K., “Effect of
catalyst addition on co-liquefaction process of coal and biomass in supercritical water,”
Sekitan Kagaku Kaigi Happyo Ronbunshu, 34, 69–72 (1997).
100. Missal, P. and Hedden, K., “Extraction of a Colorado oil shale by water in the suband supercritical phases,” Erdoel & Kohle, Erdgas, Petrochemie, 42 (9), 346–352
(1989).
101. Funazukuri, T., Yokoi, S., and Wasao, N., “Supercritical fluid extraction of Chinese
Maoming oil shale with water and toluene,” Fuel, 67 (1), 10–14 (1988).
102. Hu, H., Zhang, J., Guo, S., and Chen, G., “Extraction of Huadian oil shale with water in
sub- and supercritical states,” Fuel, 78 (6), 645–651 (1999).
103. Canel, M. and Missal, P., “Extraction of solid fuels with sub- and supercritical water,”
Fuel, 73 (11), 1776–1780 (1994).
Précédent

- 327/440

Suivant