Waste to Renewable Biohydrogen
Volume 1: Advances in Theory and Experiments
- 298 pages
- English
- ePUB (mobile friendly)
- Only available on web
Waste to Renewable Biohydrogen
Volume 1: Advances in Theory and Experiments
About This Book
Waste to Renewable Biohydrogen: Volume 1: Advances in Theory and Experiments provides a comprehensive overview of the advances, processes and technologies for waste treatment to hydrogen production. It introduces and compares the most widely adopted and most promising technologies, such as dark fermentation, thermochemical and photosynthetic processes. In this part, potential estimation, feasibility analysis, feedstock pretreatment, advanced waste-to-biohydrogen processes and each individual systems element are examined.
The book delves into the theoretical and experimental studies for the design and optimization of different waste-to-biohydrogen processes and systems. Covering several advanced waste-to-biohydrogen pretreatment and production processes, this book investigates the future trends and the promising pathways for biohydrogen production from waste.
- Discusses the potential, feasibility, progress, challenges and prospect of waste-to-biohydrogen technologies
- Explores the most promising waste-to-biohydrogen technologies including dark fermentation, thermochemical and photosynthetic processes
- Investigate the mechanisms and the effects of the influential factors on different waste-to-biohydrogen processes
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Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Contributors
- Chapter 1. Sustainable waste management: valorization of waste for biohydrogen production
- Chapter 2. Waste to biohydrogen: potential and feasibility
- Chapter 3. Waste to biohydrogen: progress, challenges, and prospects
- Chapter 4. Comparisons of biohydrogen production technologies and processes
- Chapter 5. Waste pretreatment technologies for hydrogen production
- Chapter 6. Advances in dark fermentation hydrogen production technologies
- Chapter 7. Thermochemical processes for biohydrogen production
- Chapter 8. Photosynthetic hydrogen production bacteria breeding technologies
- Chapter 9. Photosynthetic biological hydrogen production reactors, systems, and process optimization
- Chapter 10. Spectral coupling characteristics of photosynthetic biological hydrogen production system
- Chapter 11. Photosynthetic thermal effect of biological hydrogen production system
- Chapter 12. Scale-up and design of biohydrogen production reactor from laboratory scale to industrial scale
- Index