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Titlebook: Biofuels in Brazil; Fundamental Aspects, Silvio Silvério da Silva,Anuj Kumar Chandel Book 2014 Springer International Publishing Switzerlan

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978-3-319-34626-7Springer International Publishing Switzerland 2014
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https://doi.org/10.1007/978-3-531-92625-4on of second-generation (2G) ethanol, which can be produced from sugarcane bagasse (SB) and straw (SS), complementing 1G ethanol. Nevertheless, both the residues (SB and SS) are an excellent source for cogeneration of heat and power (CHP) in sugarcane processing units. Process simulation studies hav
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Warum haben wir Menschen zwei Augen?,sel and biofuels for aviation) and also bioelectricity and green chemistry. To this end it is necessary to create conditions for the increase of the private R&D expenditures, as well as governmental actions to train human resources in the area of bioenergy. With new research centers, graduate progra
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https://doi.org/10.1007/978-3-662-39855-5casted to reach 20 % in 2020. When anhydrous ethanol from sugarcane is mixed with gasoline at a 25 % ratio, 1900 kg CO. eq/m. of bioethanol is avoided. The use of biodiesel to replace diesel fuel reduces 90 % emissions of burning gas and 78 % of smoke emissions.
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https://doi.org/10.1007/978-3-662-39855-5l with gasoline. In this context, all the potential sources for ethanol production must be considered wherein cellulosics stands out as an important alternative. In this chapter, we discuss about the potential to produce ethanol from lignocellulosic materials, a renewable source largely available in
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