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Full Description
This book compiles research aspects of second-generation (2G) biofuel production derived specifically from lignocellulose biomass using biorefinery methods. It focuses on the valorization of different sources of 2G biofuels and their relative importance. The constituents of lignocelluloses and their potential characteristics different methods of treating lignocellulose, various means of lignocellulose bioconversion, and biofuel production strategies are discussed.
Features:
Describes technological advancements for bioethanol production from lignocellulosic waste
Provides the roadmap for the production and utilization of 2G biofuels
Introduces the strategic role of metabolic engineering in the development of 2G biofuels
Discusses technological advancements, life cycle assessment, and prospects
Explores the novel potential lignocellulosic biomass for 2G biofuels
This book is aimed at researchers and professionals in renewable energy, biofuel, bioethanol, lignocellulose conversion, fermentation, and chemical engineering.
Contents
1. Physical and Physicochemical Pretreatment Methods for Lignocellulosic Biomass Conversion 2. Biorefining Processes for Valorization of Lignocellulosic Biomass for Sustainable Production of Value-Added Products 3. Inhibitors and Microbial Tolerance during Fermentation of Biofuel Production 4. The Role of Metabolic Engineering in the Development of 2G Biofuels (Both in Conversion and Fermentation) 5. Fermentation of Hydrolysate Derived from Lignocellulose Biomass toward Biofuels Production 6. Rector Configurations for Thermochemical Conversion of Lignocellulosic Biomass 7. Advanced Pretreatment Process for Lignocellulosic Biomass 8. Ionic Liquids as Solvents for Separation of Biobutanol 9. Intensification in Bioethanol Production and Separation 10. Pervaporation as a Promising Approach for Recovery of Bioethanol 11. Production of High-Performance/Aviation Fuels from Lignocellulosic Biomass 12. Role of Thermophilic Microorganisms and Thermostable Enzymes in 2G Biofuel Production