Biomass, Biofuels, Biochemicals: Biohydrogen: Biomass, Biofuels, Biochemicals
Editat de Ashok Pandey, S.Venkata Mohan, Jo-Shu Chang, Patrick C. Hallenbeck, Christian Larrocheen Limba Engleză Paperback – 18 ian 2019
Hydrogen is an energy carrier and is available in chemically combined forms in water, fossil fuels and biomass. About 95 % of current hydrogen requirements are produced through fossil fuel sources. Being a clean energy source, its future widespread use as a fuel is likely to be in the transportation and distributed power generation sectors.
- Depicts a holistic view of biohydrogen in a unified approach making it a single point of reference
- Includes new technologies and perspectives giving up-to-date state-of-the-art information on research and commercialization
- Provides strategic integrations of acidogenesis with various bioprocesses essential in establishing a circular biorefinery
- Includes new research findings since the 1st edition appeared, with 50% more content
- Integrates various subjects including biotechnology, bioengineering, molecular biology, environmental science, etc.
- Reviews the various topics from a global perspective and an international list of contributors
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Specificații
ISBN-13: 9780444642035
ISBN-10: 044464203X
Pagini: 540
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Biomass, Biofuels, Biochemicals
ISBN-10: 044464203X
Pagini: 540
Dimensiuni: 191 x 235 mm
Greutate: 0.92 kg
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Biomass, Biofuels, Biochemicals
Public țintă
post-graduates students, researchers in Chemical Engineers, Biochemical Engineers, Microbiologists, Biotechnologists working in academic institutes, research institutes, industries and governmental agencies. The book is also useful to Energy producers, utilities, distribution; Engineering Companies, Process Engineering, Chemical Plants, waste management plants, and policy makers.Cuprins
1. Biohydrogen Production: An Introduction
2. Fundamentals of biohydrogen Production
3. Metabolic Engineering and Molecular Biotechnology of Biohydrogen Production
4. Hydrogenase
5. Dark-fermentative biohydrogen production
6. Thermophilic fermentation for enhanced biohydrogen Production
7. Photo-fermentative hydrogen production
8. Biophotolytic hydrogen Production
9. Microbial Electrolysis Cell for biohydrogen Production
10. Thermo-chemical Route for Biohydrogen Production
11. Biohydrogen production by Supercritical Water
12. Biohydrogen Production from Algae
13. Biohydrogen from Renewable Resources
14. Biohydrogen Production from Wastewater
15. Biohydrogen Production from Solid Wastes
16. Bioreactor and Bioprocess Design for Biohydrogen Production
17. Biorefinery Approach for biohydrogen production
18. Biohythane Production
19. System Analysis and design (or LCA) for Biohydrogen Production
20. Exenergy analysis of biohydrogen Production processes
21. Modeling and Simulation of the Biohydrogen Production Processes
22. Scale-up and Commercial Applications of Biohydrogen Processes
23. Biohydrogen Economy, Commercialization and Policy
2. Fundamentals of biohydrogen Production
3. Metabolic Engineering and Molecular Biotechnology of Biohydrogen Production
4. Hydrogenase
5. Dark-fermentative biohydrogen production
6. Thermophilic fermentation for enhanced biohydrogen Production
7. Photo-fermentative hydrogen production
8. Biophotolytic hydrogen Production
9. Microbial Electrolysis Cell for biohydrogen Production
10. Thermo-chemical Route for Biohydrogen Production
11. Biohydrogen production by Supercritical Water
12. Biohydrogen Production from Algae
13. Biohydrogen from Renewable Resources
14. Biohydrogen Production from Wastewater
15. Biohydrogen Production from Solid Wastes
16. Bioreactor and Bioprocess Design for Biohydrogen Production
17. Biorefinery Approach for biohydrogen production
18. Biohythane Production
19. System Analysis and design (or LCA) for Biohydrogen Production
20. Exenergy analysis of biohydrogen Production processes
21. Modeling and Simulation of the Biohydrogen Production Processes
22. Scale-up and Commercial Applications of Biohydrogen Processes
23. Biohydrogen Economy, Commercialization and Policy