Biohydrogen Production and Hybrid Process Development

Biohydrogen Production and Hybrid Process Development
Author :
Publisher : Elsevier
Total Pages : 567
Release :
ISBN-10 : 9780128232507
ISBN-13 : 0128232501
Rating : 4/5 (07 Downloads)

Book Synopsis Biohydrogen Production and Hybrid Process Development by : Zhao Youcai

Download or read book Biohydrogen Production and Hybrid Process Development written by Zhao Youcai and published by Elsevier. This book was released on 2020-10-07 with total page 567 pages. Available in PDF, EPUB and Kindle. Book excerpt: Biohydrogen Production and Hybrid Process Development: Energy and Resource Recovery from Food Waste explores the production of biohydrogen from food waste via anaerobic fermentation, focusing on effect factors, control methods and optimization. The book introduces food waste treatment and disposal technologies, including operational principles and process control. The authors discuss the use of aged refuse, the effect of several key factors on anaerobic gas production rate, process parameters optimization for enhancing biohydrogen yield, key factors in biohydrogen production from sewage sludge fermentation, and new developments in nutrition recovery from food waste. This book spans the entire production cycle, from waste recovery to its conversion processes, end-product, and by-product utilization, providing engineering researchers, PhD students, and industry practitioners in the field of biohydrogen production, biogas production, biomass conversion, and food waste management with a thorough background on the production of hydrogen via anaerobic fermentation. - Covers the fundamentals and applications of the use of food waste for biohydrogen production through anaerobic digestion - Explores core challenges of biohydrogen production operations, including details on process optimization and control, and multiple case studies grounded in current industrial practice - Includes methodological perspectives comparing and contrasting approaches to biohydrogen production using anaerobic digestion with optimization techniques for production efficiency


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