Fermentative Hydrogen Production: From Fundamentals to Processes
Autor Yanan Yin, Jianlong Wangen Limba Engleză Paperback – aug 2024
Part Four discusses influencing factors such as operational parameters, promotors, inhibitors, and has a dedicated section on the effects of Iron. Finally, Part Five directly compares dark hydrogen with other hydrogen production technologies through life cycle environmental impact assessments, highlighting bottlenecks and challenges in scaling up these technologies.
- Critically reviews the fundamentals and environmental impacts of biological hydrogen production technologies
- Evaluates and compares various feedstocks for biohydrogen production, including co-fermentation of different feedstocks
- Examines the use of pure and mixed cultures
- Provides case studies with real-world applications of the technologies discussed in the book
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Specificații
ISBN-13: 9780443240126
ISBN-10: 0443240124
Pagini: 408
Dimensiuni: 216 x 276 mm
Greutate: 1 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443240124
Pagini: 408
Dimensiuni: 216 x 276 mm
Greutate: 1 kg
Editura: ELSEVIER SCIENCE
Cuprins
Part I: Introduction
1. Hydrogen properties
2. Hydrogen production technologies
3. Hydrogen purification technologies
4. Hydrogen storage technologies
5. Hydrogen application
6. Hydrogen safety
Part II: Feedstocks
7. First-generation energy crop
8. Second-generation energy crop
9. Third-generation energy crop
10. Waste to hydrogen-various organic wastes
11. Co-fermentation of different feedstocks
Part III: Microorganisms
12. Typical hydrogen-producers
13. Mixed cultures
14. Microbial communities analysis methods
15. Evolution of microbial communities
16. Hydrogen-producing metabolic pathways
Part IV: Influencing factors
17. Operational parameters
18. Promotors
19. Inhibitors
20. Iron
Part V: Life cycle environmental impacts assessment
21. Costs of different hydrogen production methods
22. Environmental impact comparison of different hydrogen production methods
23. Case study
1. Hydrogen properties
2. Hydrogen production technologies
3. Hydrogen purification technologies
4. Hydrogen storage technologies
5. Hydrogen application
6. Hydrogen safety
Part II: Feedstocks
7. First-generation energy crop
8. Second-generation energy crop
9. Third-generation energy crop
10. Waste to hydrogen-various organic wastes
11. Co-fermentation of different feedstocks
Part III: Microorganisms
12. Typical hydrogen-producers
13. Mixed cultures
14. Microbial communities analysis methods
15. Evolution of microbial communities
16. Hydrogen-producing metabolic pathways
Part IV: Influencing factors
17. Operational parameters
18. Promotors
19. Inhibitors
20. Iron
Part V: Life cycle environmental impacts assessment
21. Costs of different hydrogen production methods
22. Environmental impact comparison of different hydrogen production methods
23. Case study