Waste to Renewable Biohydrogen, Volume 2: Numerical Modelling and Sustainability Assessment
Waste to Renewable Biohydrogen, Volume 2: Numerical Modelling and Sustainability Assessment
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Waste to Renewable Biohydrogen,Volume Two: Numerical Modelling and Sustainability Assessment provides an integrated approach to the experimental, modeling, and sustainability aspects of waste-to-biohydrogen systems, focusing on processes for waste treatment to hydrogen production, modeling and simulation methodologies, and economic, environmental, and sustainability implications.
Format: Paperback / softback
Length: 270 pages
Publication date: 01 November 2022
Publisher: Elsevier Science Publishing Co Inc
Waste to Renewable Biohydrogen,Volume Two: Numerical Modelling and Sustainability Assessment is a comprehensive guide that delves into the experimental, modeling, and sustainability aspects of waste-to-biohydrogen systems. The book focuses on processes for waste treatment to hydrogen production, exploring modeling and simulation methodologies for designing and optimizing various processes and systems. Additionally, it examines the application of computational fluid dynamics and artificial neural networks. Furthermore, it addresses the economic, environmental, and sustainability implications of waste-to-biohydrogen systems, covering techniques for cost-benefit analysis, techno-economic analysis, lifecycle assessment, sustainability ranking, and supply chain design. This comprehensive reference serves as a valuable resource for energy researchers and industry practitioners, as well as for graduate students, early career researchers, and waste management professionals.
Waste to Renewable Biohydrogen,Volume Two: Numerical Modelling and Sustainability Assessment is a comprehensive guide that delves into the experimental, modeling, and sustainability aspects of waste-to-biohydrogen systems. The book focuses on processes for waste treatment to hydrogen production, exploring modeling and simulation methodologies for designing and optimizing various processes and systems. Additionally, it examines the application of computational fluid dynamics and artificial neural networks. Furthermore, it addresses the economic, environmental, and sustainability implications of waste-to-biohydrogen systems, covering techniques for cost-benefit analysis, techno-economic analysis, lifecycle assessment, sustainability ranking, and supply chain design. This comprehensive reference serves as a valuable resource for energy researchers and industry practitioners, as well as for graduate students, early career researchers, and waste management professionals.
Weight: 450g
Dimension: 229 x 152 (mm)
ISBN-13: 9780128216750
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