Ethanol: Science and Engineering
Editat de Angelo Basile, Adolfo Iulianelli, Francesco Dalena, T. Nejat Vezirogluen Limba Engleză Paperback – 2 sep 2018
The idea of using ethanol as a fuel is one of the most promising options in the arena of alternative fuels because of it versatile use as an intermediate for producing hydrogen via reforming reactions, direct fuel cells feed and/or its production from biomass, which is also considered a sustainable feedstock.
- Reviews ethanol production methods from biomass
- Discusses the potential of ethanol as a viable future fuel
- Includes hydrogen production methods using ethanol in catalytic reforming processes
- Outlines the various technologies based on ethanol
- Includes ethanol powered fuel cells
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Specificații
ISBN-13: 9780128114582
ISBN-10: 0128114584
Pagini: 574
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.98 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128114584
Pagini: 574
Dimensiuni: 191 x 235 x 31 mm
Greutate: 0.98 kg
Editura: ELSEVIER SCIENCE
Public țintă
Chemists and chemical engineers researching catalytic phenomena in an academic/government/industrial research environment, materials scientists. The book is a key reference text for R&D managers in industry interested in the development of bioenergy technologies as well as academic researchers and postgraduate students.Cuprins
Part 1: Science and Production1. Ethanol to chemicals: reactions, reactivities and application. An overview2. Ethanol from biomass3. Kinetics analysis of ethanol production processes4. Ethanol for food and transportation: a kind of competition?5. Bioethanol exploitation: future and perspectives
Part 2: Application and Innovation6. Catalysts for the ethanol reforming processes7. Steam reforming, preferential oxidation and autothermal reforming of ethanol for hydrogen production8. Ethanol as an internal combustion engine fuel9. Ethanol opportunities for electricity and hydrogen production in bioelectrochemical systems10. Direct ethanol fuel cells11. Crude bioethanol reforming processes: the advantages of a bio-source exploitation12. Ethanol in automotive applications
Part 3: Modelling and Technology13. State of the art on the conventional processes for ethanol production14. Hydrogen production technologies from ethanol15. Kinetic of the ethanol reforming16. Ethanol production in thermally coupled, fluidized bed, bubble column and membrane reactors17. Hydrogen production from ethanol reforming: a modeling approach18. Modeling and control of the output current of a direct ethanol fuel cell system19. Electrical Vehicles fueled by ethanol20. Ethanol for air transportation
Part 4: Environment and Economy21. Ethanol economy: environment, demand, and marketing22. Economic assessment of ethanol production23. Cost estimation of an integrated system for co-production of electricity and ethanol24. A technical and economic comparison of the bioethanol exploitation within agriculture and industry.
Part 2: Application and Innovation6. Catalysts for the ethanol reforming processes7. Steam reforming, preferential oxidation and autothermal reforming of ethanol for hydrogen production8. Ethanol as an internal combustion engine fuel9. Ethanol opportunities for electricity and hydrogen production in bioelectrochemical systems10. Direct ethanol fuel cells11. Crude bioethanol reforming processes: the advantages of a bio-source exploitation12. Ethanol in automotive applications
Part 3: Modelling and Technology13. State of the art on the conventional processes for ethanol production14. Hydrogen production technologies from ethanol15. Kinetic of the ethanol reforming16. Ethanol production in thermally coupled, fluidized bed, bubble column and membrane reactors17. Hydrogen production from ethanol reforming: a modeling approach18. Modeling and control of the output current of a direct ethanol fuel cell system19. Electrical Vehicles fueled by ethanol20. Ethanol for air transportation
Part 4: Environment and Economy21. Ethanol economy: environment, demand, and marketing22. Economic assessment of ethanol production23. Cost estimation of an integrated system for co-production of electricity and ethanol24. A technical and economic comparison of the bioethanol exploitation within agriculture and industry.