Renewable Hydrogen Technologies: Production, Purification, Storage, Applications and Safety
Editat de Luis M Gandia, Gurutze Arzamedi, Pedro M Dieguezen Limba Engleză Hardback – 29 mai 2013
- Hydrogen from water and biomass considered
- Holistic approach to the topic of renewable hydrogen production
- Power conditioning of water electrolyzers and integration of renewable hydrogen energy systems considered
- Subjects not included in previous books on hydrogen energy
- Micro process technology considered
- Subject not included in previous books on hydrogen energy
- Applications of CFD considered
- Subject not included in previous books on hydrogen energy
- Fundamental aspects will not be discussed in detail consciously as they are suitably addressed in previous books
- Emphasis on technological advancements
- Chapters written by recognized experts
- Up-to date approach to the subjects and relevant bibliographic references
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Specificații
ISBN-13: 9780444563521
ISBN-10: 0444563520
Pagini: 472
Ilustrații: 20 illustrations
Dimensiuni: 216 x 279 x 25 mm
Greutate: 1.37 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0444563520
Pagini: 472
Ilustrații: 20 illustrations
Dimensiuni: 216 x 279 x 25 mm
Greutate: 1.37 kg
Editura: ELSEVIER SCIENCE
Public țintă
Primary MarketAcademia: lecturers and scientific researchers; worldwide.
Industry: professionals and researchers mainly related to the transport and energy sectors; worldwide.
Secondary Market
Postgraduate students in energy, environmental sciences and engineering (chemical, electrical, etc); worldwide.
Policymakers, consultants; worldwide
Cuprins
Introduction
1. Renewable hydrogen: Production routes and energetic utilization
2. Present and future of renewable hydrogen as energy carrier
Hydrogen from water
3. Recent advances in water electrolysis
4. Electric conditioning systems for electrolyzers fed with renewables: Power electronics
5. Integration of hydrogen systems and grid-connected renewable electric plants
6. Photocatalytic water splitting
7. Solar thermal water splitting
Hydrogen from biomass
8. Biomass sources for hydrogen production
9. Hydrogen from biomass: Advances in thermochemical processes
10. Biological and fermentative hydrogen production
11. Catalytic microreactors for hydrogen production
12. Hydrogen from bioalcohols
New technologies for hydrogen purification and storage
13. Micro process technology for hydrogen purification
14. Advances in hydrogen separation and purification with membranes
15. Advances in hydrogen storage in carbon materials
16. Progress in hydrogen storage in metal and complex hydrides
Transportation applications
17. Recent advances in fuel cells for transport using hydrogen
18. Hydrogen-fueled internal combustion engines
Modeling and safety issues
19. Computational Fluid Dynamics (CFD) as a tool for designing hydrogen technology
20. Risk analysis of hydrogen fuel through CFD simulations
1. Renewable hydrogen: Production routes and energetic utilization
2. Present and future of renewable hydrogen as energy carrier
Hydrogen from water
3. Recent advances in water electrolysis
4. Electric conditioning systems for electrolyzers fed with renewables: Power electronics
5. Integration of hydrogen systems and grid-connected renewable electric plants
6. Photocatalytic water splitting
7. Solar thermal water splitting
Hydrogen from biomass
8. Biomass sources for hydrogen production
9. Hydrogen from biomass: Advances in thermochemical processes
10. Biological and fermentative hydrogen production
11. Catalytic microreactors for hydrogen production
12. Hydrogen from bioalcohols
New technologies for hydrogen purification and storage
13. Micro process technology for hydrogen purification
14. Advances in hydrogen separation and purification with membranes
15. Advances in hydrogen storage in carbon materials
16. Progress in hydrogen storage in metal and complex hydrides
Transportation applications
17. Recent advances in fuel cells for transport using hydrogen
18. Hydrogen-fueled internal combustion engines
Modeling and safety issues
19. Computational Fluid Dynamics (CFD) as a tool for designing hydrogen technology
20. Risk analysis of hydrogen fuel through CFD simulations
Recenzii
"...provides very good insights into the recent research activities in the areas of renewable hydrogen production...delivers a brief review of hydrogen purification and storage technologies as well as hydrogen usage in fuel cells and internal combustion engines." --Energy Technology, November 2014
"Editors Gandía, Arzamendi, and Díeguez …offer this collection on the chemistry, physics, and technology of hydrogen fuel. Aimed at researchers, industry professionals, and students of environmental science, the book focuses on renewable feedstocks including photocatalysis and biomass, as well as purification and storage challenges that must be met before hydrogen can be used for a large portion of our energy needs." --Reference and Research Book News, December 2013
"Editors Gandía, Arzamendi, and Díeguez …offer this collection on the chemistry, physics, and technology of hydrogen fuel. Aimed at researchers, industry professionals, and students of environmental science, the book focuses on renewable feedstocks including photocatalysis and biomass, as well as purification and storage challenges that must be met before hydrogen can be used for a large portion of our energy needs." --Reference and Research Book News, December 2013