Biomass Processes and Chemicals
Biomass Processes and Chemicals
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Biomass Processes and Chemicals is a book that provides information on the options available for the production of chemicals from biomass, as petroleum-based and natural gas-based chemicals are being depleted.
Format: Paperback / softback
Length: 472 pages
Publication date: 17 February 2022
Publisher: Elsevier Science Publishing Co Inc
Biomass Processes and Chemicals is a comprehensive guide designed to assist readers in exploring the diverse range of options available for the production of chemicals from biomass. While petroleum-based and natural gas-based chemicals have been widely used and relied upon for over a century, it is evident that their reserves are gradually diminishing. As a result, there is an urgent need for alternative technologies to meet the growing demand for chemicals.
The emergence of chemicals derived from sources is playing a pivotal role in establishing a thriving chemicals-from-biomass industry. This book serves as a valuable resource, providing in-depth coverage of these advancements and their potential implications for the future.
In the first chapter, the book provides an overview of biomass, including its definition, types, and applications. It explores the significance of biomass as a renewable and sustainable resource, highlighting its potential to mitigate climate change and reduce dependence on finite fossil fuel reserves. The chapter also discusses the challenges and opportunities associated with biomass utilization, such as feedstock availability, processing efficiency, and environmental impact.
Chapter 2 delves into the various biomass conversion processes, such as thermal conversion, chemical conversion, and biochemical conversion. It explains the principles and mechanisms involved in each process, including thermochemical reactions, catalysis, and bioconversion. The chapter also highlights the advantages and disadvantages of each conversion method and discusses the latest research and development efforts in the field.
Chapter 3 explores the production of chemicals from biomass, including the utilization of different feedstocks, such as agricultural residues, forest biomass, and municipal solid waste. It discusses the extraction, purification, and conversion of these feedstocks into valuable chemicals, such as biofuels, biochemicals, and polymers. The chapter also highlights the challenges and opportunities associated with each chemical production route, such as cost competitiveness, scalability, and environmental impact.
Chapter 4 focuses on the application of chemicals produced from biomass in various industries, such as agriculture, pharmaceuticals, and textiles. It discusses the use of biofuels as renewable energy sources, the production of biochemicals for various applications, and the development of biodegradable polymers for sustainable packaging. The chapter also highlights the potential for collaboration between different industries and stakeholders to promote the development and commercialization of chemicals from biomass.
Chapter 5 explores the economic aspects of chemicals produced from biomass, including the cost competitiveness, market potential, and investment requirements. It discusses the various funding mechanisms available for biomass-based projects, such as government subsidies, private investments, and public-private partnerships. The chapter also highlights the potential for job creation and economic growth in the chemicals-from-biomass industry.
In conclusion, Biomass Processes and Chemicals is a comprehensive and timely guide that provides valuable insights into the options available for the production of chemicals from biomass. It serves as a valuable resource for researchers, policymakers, industry professionals, and students interested in exploring the potential of renewable resources for chemical production. As the demand for chemicals continues to grow, the development of alternative technologies, such as those based on biomass, will become increasingly important in addressing the challenges of sustainability and resource depletion.
Weight: 970g
Dimension: 229 x 152 (mm)
ISBN-13: 9780128216798
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