Consolidated Bioprocessing for Sustainable Fuel Production

278.99 SGD
Member Price
251.10
English

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Product Description

Presents cutting-edge advances in consolidated bioprocessing for next-generation bioenergy The urgent need to transition towards renewable, low-carbon energy sources has brought consolidated bioprocessing (CBP) into sharp focus as a potential game-changer in sustainable fuel production. CBP integrates multiple stages of biomass conversion — pretreatment, hydrolysis, and fermentation — into a single step, reducing both costs and resource use. Yet, despite its promise, progress towards large-scale deployment has been slow due to challenges in efficiency and scalability. Consolidated Bioprocessing for Sustainable Fuel Production addresses these critical barriers, providing both a theoretical foundation and practical insights into one of the most innovative approaches in modern bioenergy research. Divided into thirteen detailed chapters by leading researchers, the book begins by contextualising industrial bioenergy production and outlining the biochemical processes underlying fuel generation. It explores microbial communities central to CBP, strategies for overcoming process limitations, and advanced reactor design for optimised production. Case studies illus??trate real-world applications of CBP at pilot and commercial scale, whilst techno-economic analyses highlight pathways to viability. The discussion extends beyond the laboratory to consider socio-economic and environmental impacts, positioning CBP as a pivotal tool in building sustainable biorefineries. Equipping readers with both the knowledge and perspective to advance green energy technologies, Consolidated Bioprocessing for Sustainable Fuel Production: Explores microbial ecology and enzyme systems essential for efficient biomass conversion Provides detailed analysis of reactor design and optimisation for CBP processes Examines techno-economic challenges with clear recommendations for cost reduction Features real-world examples demonstrating CBP applications at industrial and pilot scales Offers future research

Presents cutting-edge advances in consolidated bioprocessing for next-generation bioenergy The urgent need to transition towards renewable, low-carbon energy sources has brought consolidated bioprocessing (CBP) into sharp focus as a potential game-changer in sustainable fuel production. CBP integrates multiple stages of biomass conversion—pretreatment, hydrolysis, and fermentation—into a single step, reducing both costs and resource use. Yet, despite its promise, progress towards large-scale deployment has been slow due to challenges in efficiency and scalability. Consolidated Bioprocessing for Sustainable Fuel Production addresses these critical barriers, providing both a theoretical foundation and practical insights into one of the most innovative approaches in modern bioenergy research. Divided into thirteen detailed chapters by leading researchers, the book begins by contextualising industrial bioenergy production and outlining the biochemical processes underlying fuel generation. It explores microbial communities central to CBP, strategies for overcoming process limitations, and advanced reactor design for optimised production. Case studies illustrate real-world applications of CBP at commercial scale, whilst techno-economic analyses highlight pathways to viability. The discussion extends beyond the laboratory to consider socio-economic and environmental impacts, positioning CBP as a pivotal tool in building sustainable biorefineries. Equipping readers with both the knowledge and perspective to advance green energy technologies, Consolidated Bioprocessing for Sustainable Fuel Production: Explores microbial ecology and enzyme systems essential for efficient biomass conversionProvides detailed analysis of reactor design and optimisation for CBP processesExamines techno-economic challenges with clear recommendations for cost reductionFeatures real-world examples demonstrating CBP applications at industrial and pilot scalesOffers future research directions for impr

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