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Innovations in Thermochemical Technologies for Biofuel Processing

Innovations in Thermochemical Technologies for Biofuel Processing

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  • More about Innovations in Thermochemical Technologies for Biofuel Processing

Innovations in Thermochemical Technologies for Biofuel Processing covers current technologies in alternate fuels and chemical production, including biomass-to-liquid, biomass-to-gas, and gas-to-liquid biomass conversion technologies. It discusses biomass feedstocks, technologies, co-processing, fuel upgrading, and biorefining process optimization. The book also examines the strengths, weaknesses, opportunities, and threats of notable biofuels.

Format: Paperback / softback
Length: 338 pages
Publication date: 28 March 2022
Publisher: Elsevier - Health Sciences Division

Innovations in Thermochemical Technologies for Biofuel Processing is a comprehensive exploration of the latest advancements in alternate fuels and chemical production. This book delves into various technologies, including biomass-to-liquid, biomass-to-gas, and gas-to-liquid biomass conversion, which are crucial in the production of biofuels.

The topics covered in this book are extensive and encompass a wide range of subjects. They include detailed discussions on biomass feedstocks, such as various types of biomass sources and their characteristics, which are essential for efficient biofuel processing. The book also provides in-depth insights into biomass-to-liquid technologies, including liquefaction, pyrolysis, and transesterification, which are used to convert biomass into liquid fuels. These technologies are crucial in the production of biofuels like bio-oil, bio-crude oil, biodiesel, bioethanol, and biobutanol.

Furthermore, the book explores biomass-to-gas technologies, such as gasification, which convert biomass into gaseous fuels like methane and syngas. These gases can be further processed into liquid fuels through syngas fermentation and Fischer-Tropsch synthesis, resulting in the production of bio-jet fuels, biohydrogen, biomethane, and hydrocarbon fuels.

Co-processing technologies are also discussed in detail, as they involve the integration of biofuel production with other industries, such as waste management and power generation. This approach not only enhances the sustainability of biofuel production but also maximizes the economic benefits.

Fuel upgrading technologies, such as hydrotreating and reforming, are explored to improve the quality and properties of biofuels. These technologies help in reducing emissions and enhancing the fuel's performance in engines.

Novel catalyst development for biorefining is another important topic covered in the book. Biorefining is the process of converting biomass into valuable products like chemicals, plastics, and biofuels. Novel catalysts play a crucial role in improving the efficiency and selectivity of these processes.

The book also emphasizes the optimization of biorefining processes through the use of advanced technologies, such as artificial neural networks. These networks help in modeling and predicting the behavior of complex biological systems, which is essential for optimizing biorefining processes.

Unit operations, reaction kinetics, and other fundamental aspects of biofuel processing are extensively discussed. This information is essential for understanding the underlying principles of biofuel production and for developing efficient and sustainable processes.

In addition to these technical aspects, the book also provides a comprehensive analysis of the strengths, weaknesses, opportunities, and threats associated with notable biofuels. This analysis helps in identifying the challenges and opportunities in the biofuel industry and provides insights into the future of biofuel production.

Overall, Innovations in Thermochemical Technologies for Biofuel Processing is a valuable resource for researchers, scientists, engineers, and policymakers interested in the field of biofuel production. It provides a comprehensive overview of the latest technologies, processes, and strategies in biofuel production, and serves as a reference for future research and development.


Dimension: 235 x 191 (mm)
ISBN-13: 9780323855860

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