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Titlebook: Biomass Conversion; The Interface of Bio Chinnappan Baskar,Shikha Baskar,Ranjit S. Dhillon Book 2012 Springer-Verlag Berlin Heidelberg 2012

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Catalysts in Thermochemical Biomass Conversion, in acid/base properties, metal (Ni, Pt, etc.) content and porous structure leads to the regulation of the product characteristics for different applications. On the other hand, designing catalysts specifically for biomass conversion is needed to obtain products having improved properties such as su
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Fatty Acids-Derived Fuels from Biomass via Catalytic Deoxygenation,w technology is an alternative route for production of diesel range hydrocarbons and can be achieved by catalytic hydrogenation of carboxyl group over sulfided catalysts as well as decarboxylation/decarbonylation over noble metal-supported catalysts and catalytic cracking of fatty acids and their de
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Production of Bioethanol from Food Industry Waste: Microbiology, Biochemistry and Technology,g energy consumption and greenhouse gas emissions has led to a search renewable and sustainable energy sources. Food industry waste such as lignocellulosic biomass provides enormous potential for bioethanol production because of its low cost and huge availability. To produce bioethanol from cellulos
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Enhancement of Biohydrogen Production by Two-Stage Systems: Dark and Photofermentation,mically viable way to produce hydrogen compared with present production technologies. Hydrogen yields in dark fermentation are rather low since carbohydrates are converted into hydrogen and volatile fatty acids with a maximal theoretical yield of 4 mol H./mol glucose when acetate is the sole end pro
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Lignin as Source of Fine Chemicals: Vanillin and Syringaldehyde,fineries. Production and separation of high added-value compounds from renewable resources are emergent areas of science and technology with relevance to both scientific and industrial communities. Lignin is one of the raw materials with high potential due to its chemistry and proprieties. One of th
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