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Ethanol environmental sciences

Kalogo, Y., Habibi, S., Maclean, H.L., et al., 2007. Enviroiunental implications of municipal solid waste-derived ethanol. Environmental Science Technology 41, 35-41. [Pg.73]

Chester, M., Martin, E., 2009. CeUulosic ethanol from municipal solid waste a case study of the economic, energy, and greenhouse gas impacts in California. Environmental Science Technology 43 (14), 5183-5189. http //dx.doi.org/10.1021/es802788z. [Pg.72]

Luo, D., Hu, Z., Choi, D.G., et al., 2010. Life cycle energy and greenhouse gas emissions for an ethanol production process based on blue-green algae. Environmental Science Technology 44,8670-8677. [Pg.73]

Azzam, A.M., 1989. Pretreatment of cane bagasse with alkahne hydrogen peroxide for enzymatic hydrolysis of cellulose and ethanol fermentation. Journal of Environmental Science and Health Part B 24 (4), 421—433. [Pg.226]

Le Man, H., Behera, S.K., Park, H.S., 2010. Optimization of operational parameters for ethanol production from Korean food waste leachate. International Journal of Environmental Science 7 (1), 157-164. [Pg.649]

Farrell, Alexander E., Richard J. Plevin, Brian T. Turner, Andrew D. Jones, Michael O Hare, and Daniel M. Kammen. 2006. Ethanol can contribute to energy and environmental goals. Science 3ii0anuary 27) 506—508. [Pg.185]

Hong Kong University of Science and Technology, Health, Safety, and Environmental Office. An explosive nitric acid-ethanol mixture available at http //www.ab.ust.hk/sepo/tips/ls/ls005.htm (accessed September 4, 2007). [Pg.404]

The production of nanostructured carbon materials by hydrothermal processes from natural precursors is one of the most attractive subjects in material science today. Carbon materials prepared from hydrothermal process are currently being used in various fields of research including environmental, electrical, chemical, and biomedical fields. In environmental application, carbon is mainly used as a sorbent material for the removal of heavy metal ions (CrO/, Pb +, and Cd +) from water and wastewater [116,117]. Carbon nanocoils prepared from saccharides (sucrose, glucose, and starch) with a support of Pt/Ru nanoparticles exhibit a high catalytic activity for the electro-oxidation of methanol in an acid medium [150]. Similarly, electro-oxidation of ethanol and methanol was carried out with electro catalysts, such as Pd/CHC (coin-like hollow carbon), Pt/ HCS (hard carbon spherules), and Pt/Pd/CMS (carbon microspheres) in acidic and alkaline media... [Pg.410]

Campbell JE, Lobell DB, Field CB (2009) Greater transportation energy and GHG offsets from bioelectricity than ethanol. Science 324 1055-1057 Chisti Y (2008) Response to reijnders Do biofuels from microalgae beat biofuels from terrestrial plants Trends Biotechnol 26 351-352 Clarens AF, Resurreccion EP, White MA, Colosi LM (2010) Environmental life cycle comparison of algae to other bioenergy feedstocks. Environ Sci Technol 44 1813-1819... [Pg.380]

Hill, J., Nelson, E., Tdman, D., Polasky, S., Douglas, T., 2006. Environmental, economic, and energetic costs and benefits of biodiesel and ethanol biofuels. Proceedings of the National Academy of Sciences 103 (30), 11206—11210. [Pg.37]


See other pages where Ethanol environmental sciences is mentioned: [Pg.125]    [Pg.126]    [Pg.250]    [Pg.113]    [Pg.313]    [Pg.144]    [Pg.293]    [Pg.412]    [Pg.4]    [Pg.137]    [Pg.394]    [Pg.159]    [Pg.229]    [Pg.245]    [Pg.596]    [Pg.124]    [Pg.72]    [Pg.416]    [Pg.237]   
See also in sourсe #XX -- [ Pg.134 , Pg.147 , Pg.154 , Pg.166 , Pg.172 , Pg.181 , Pg.189 , Pg.191 , Pg.200 ]




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