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Titlebook: Biorefinery of Alternative Resources: Targeting Green Fuels and Platform Chemicals; Sonil Nanda,Dai-Viet N. Vo,Prakash Kumar Sarangi Book

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Bioconversion of Agro-industrial Residues to Second-Generation Bioethanol,al of different lignocellulosic biomasses, especially the agricultural crop residues, is described. The composition of the main molecules forming the cell wall of different plants is provided. The enzymes that are involved in the deconstruction of plant cell walls as well as the release of fermentab
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Biorefinery Approaches for the Production of Fuels and Chemicals from Lignocellulosic and Algal Fee pharmaceuticals, cosmetics and textiles. From lignocellulosic biomass, the co-production technologies of chemicals and fuels via lignin and sugar (C. and C.) platforms have been focused. On the other hand, the generation of bioactive components such as lipids, carbohydrates and proteins from algae
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Co-pyrolysis of Lignocellulosic Biomass and Polymeric Wastes for Liquid Oil Production,stes. This co-pyrolysis approach is capable of increasing the yield and enhancing the quality of the bio-oil product. Thus, it can be a potentially sustainable and feasible approach for energy recovery from biomass and wastes polymers.
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Conversion of Waste Biomass to Bio-oils and Upgradation by Hydrothermal Liquefaction, Gasification,oward improving the bio-oil properties, both in quality and quantity, the influence of process parameters, reactor configurations, and their primal source were discussed in detail. By comparing the various conversion and upgrading technologies, hydrodeoxygenation is considered as the prominent alter
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Upgrading of Bio-oil from Biomass Pyrolysis: Current Status and Future Development,–C bonds intact, processing knowledge base of petroleum industry may not be utilized for hydrodeoxygenation of bio-oil. Therefore, novel catalysts, solvents, and processes need to be developed. This chapter reviews the state-of-the-art results obtained from the research and development of these tech
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Opportunities for Biodiesel Compatibility as a Modern Combustion Engine Fuel,cations such as injection timing, pressure, exhaust gas recirculation, etc. The review holds well on the possibility of using biodiesel in diesel engines, but still it is not economically viable and needs more research and technology advancements to make it competitive with other conventional fuels
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gical technologies. In summary, the book offers comprehensive and representative descriptions of key fuel processing technologies, energy conversion and management, waste valorization, eco-friendly waste remediation, biomass supply chain, lifecycle assessment, techno-economic analysis and the circular bioeconomy..978-981-15-1806-5978-981-15-1804-1
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