Environmental Engineering Reference
In-Depth Information
89. Demirbas, A. (2007) Progress and recent trends in biofuels. Progress in Energy and
Combustion Science , 33, 1-18.
90. Nakagawa, H.; Harada, T.; Ichinose, T.; Takeno, K., Matsumoto, S., Kobayashi, M., Sakai,
M. (2007) Biomethanol production and CO 2 emission reduction from forage grasses, trees,
andcropresidues. JARQ , 41, 173-180.
91. http://www.refuel.eu/biofuels/biomethanol/.
92. http://www.solarix.eu/en/news/33 (accessed December 2008).
93. van Kasteren, J.M.N., Dizdarevic, D., van der Waall, W.R., Guom, J., Verbernem, R. (2005)
Bioethanol from syngas. Project number 0456.472.
94. http://www.iogen.ca/.
95. http://www.processum.se/eng/press/filer/FOLDER_eng.pdf.
96. http://powerecalene.com/
97. Demirbas, A. (2008) Biohydrogen generation from organic waste. Energy Sources Part A:
Recovery, Utilization, and Environmental Effects , 30, 475-482.
98. Demirbas, A. (2004) Hydrogen-rich gas from fruit shells via supercritical water extraction.
International Journal of Hydrogen Energy , 29, 1237-1243.
99. Bhaskar, T., Sera, A., Muto, A., Sakata, Y. (2008) Hydrothermal upgrading of wood biomass:
Influence of the addition of K 2 CO 3 and cellulose/lignin ratio. Fuel , 87(10-11), 2236-2242.
100. Steinmann, L. (1999) PCT Int. Pat ., WO 9915605 A1 19990401
101. http://www.cpi.umist.ac.uk/eminent/Confidential/meeting/RigaMeeting/
Riga%20Workshop/March%2008%20HTU%20case.ppt.
102. http://www.refuel.eu/biofuels/htu-diesel/.
103. Dry, M.E. (1996) Practical and theoretical aspects of the catalytic Fischer-Tropsch process.
Applied Catalysis A: General , 138(2), 319-344.
104. Dry, M.E. (2001) High quality diesel via the Fischer-Tropsch process - a review. Journal of
Chemical Technology and Biotechnology , 77(1), 43-50.
105. Li, S., Krishnamoorthy, S., Li, A., Meitzner, G.D. Iglesia, E. (2002) Promoted iron-based
catalysts for the Fischer-Tropsch synthesis: Design, synthesis, site densities, and catalytic
properties. Journal of Catalysis , 206(2), 202-217.
106. Schulz, H. (1999) Short history and present trends of Fischer-Tropsch synthesis. Applied
Catalysis A: General , 186(1-2), 3-12.
107. Alleman, T.L., McCormick, R.L. (2003) SAE Technical Paper No. 2003-01-0763
108. Demirbas, A. (2007) Alternatives to petroleum diesel fuel. Energy Sources Part B:
Economics, Planning and Policy , 2, 343-351.
109. Tijmensen, M.J.A., Faaij, A.P.C., Hamelinck, C.N., van Hardeveld, M.R.M. (2002)
Exploration of the possibilities for production of Fischer Tropsch liquids and power via
biomass gasification. Biomass and Bioenergy , 23(2), 129-152.
110. Russo, G. (2006) Special report: Biofuels: Bio bonanza. Nature , 444, 648-649.
111. Tilman, D., Hill, J., Lehman, C. (2006) Carbon-negative biofuels from low-input high-
diversity grassland biomass. Science , 314, 1598-1600.
112. Lange, J.P. (2007) Lignocellulose conversion: An introduction to chemistry, process and
economics. Biofuels Bioproducts Biorefining , 1(1), 39-48.
113. Pu, Y., Zhang, D., Singh, M.P., Ragauskas, A.J. (2008) The new forestry biofuels sector.
Biofuels Bioproducts Biorefining , 2(1), 58-73.
114. Lynd, L.R., Van Zyl, W.H., McBride, J.E., Laser, M. (2005) Consolidated bioprocessing of
cellulosic biomass: An update. Current Opinion in Biotechnology , 16(5), 577-583.
115. Atsumi, S., Hanai, T., Liao, J.C. (2008) Non-fermentative pathways for synthesis of
branched-chain higher alcohols as biofuels. Nature , 451, 86-90.
116. Tollefson, J. (2008) Energy: Not your father's biofuels. Nature , 451, 880-883.
117. Tollefson, J. (2008) Chemistry World , 5(2), 21.
118. Mata-Alvarez, J., Macé, S., Llabrés, P. (2000) Anaerobic digestion of organic solid wastes.
An overview of research achievements and perspectives. Bioresource Technology , 74, 3-16.
119. Derbimas, A. (2001) Energy Conversion and Management , 42, 1375-1378.
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