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Read PDF Compendium of Hydrogen Energy: Hydrogen Production and Purification

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The first part of the volume investigates various types of hydrogen fuel cells, including solid oxide, molten carbonate, and proton exchange membrane.

Compendium of Hydrogen Energy - Read Online

The second part looks at hydrogen combustion energy, and the final section explores the use of metal hydrides in hydrogen energy conversion. Toggle navigation.

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Other nonrenewable feedstocks 4. Conclusions 4. Future trends List of acronyms 5. Hydrogen production by reforming of bio-alcohols 5. Introduction 5.

Sustainable production of hydrogen gas

Reforming of ethanol 5. Reforming of butanol 5.

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Reforming of glycerol 5. Conclusions List of acronyms 6. Hydrogen production by gasification of biomass and opportunity fuels 6. Introduction: what is gasification of biomass and opportunity fuels? Principles and feedstocks 6. Process of gasification of biomass and opportunity fuels 6. Future trends 6. Sources of further information and advice List of acronyms Part Three. Production of hydrogen through electrolysis 7.

Hydrogen production using high-pressure electrolyzers 7. Introduction 7. Thermodynamic aspects and high-pressure electrolyzer configurations 7. High-pressure electrolysis with alkaline systems 7. Future trends Nomenclature 8. Hydrogen production by high-temperature steam electrolysis 8.

Compendium of Hydrogen Energy : Hydrogen Production and Purification

Introduction: what are high-temperature steam electrolyzers? Process of producing hydrogen using HTSE 8. Advantages and disadvantages of hydrogen production using HTSE 8.


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Future trends List of acronyms 9. Hydrogen production by polymer electrolyte membrane water electrolysis 9. Introduction 9. Polymer electrolyte membrane water electrolysis 9. Future trends 9. Conclusions 9.


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  • Sources of further information and advice Nomenclature List of acronyms Part Four. Emerging methods for the production of hydrogen Hydrogen production using photobiological methods Introduction Advantages and disadvantages of hydrogen production using photobiological methods Future trends to improve photobiological H2 production List of acronyms Hydrogen production via thermochemical water splitting Redox cycles based on metal oxide pairs and metal—metal oxide pairs Sulfur and sulfuric acid-based cycles Summary Nomenclature Introduction: what is plasma Plasma sources used in hydrogen production Plasma processes for hydrogen production Feedstocks of hydrogen Conclusion Sources of further information and advice Nomenclature List of acronyms Part Five.

    Hydrogen purification and low-carbon hydrogen production Hydrogen purification methods: iron-based redox processes, adsorption, and metal hydrides Principles and processes Advantages and disadvantages of the methods Conclusion List of acronyms Polymeric membranes for the purification of hydrogen Hydrogen separation methods Membrane types for hydrogen separation Future trends Single-stage hydrogen production and separation from fossil fuels using micro- and macromembrane reactors Oil exploitation and the hydrogen economy Hydrogen production using membrane microreactors Conclusions Nomenclature List of acronyms Chemical and calcium looping reforming for hydrogen production and carbon dioxide capture Historical development Past developments and future directions Scale-up issues and technology option Limits to sorbent developments Sources of further information Low-carbon production of hydrogen from fossil fuels Fossil fuel-based hydrogen production with carbon capture and storage Carbon dioxide-free hydrogen production via methane decomposition Use of nuclear heat input for fossil-based hydrogen production Solar-powered hydrogen production from hydrocarbons Conclusions Future trends and outlook Sources of further information List of acronyms Index.


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    • Provides a comprehensive understanding of the current methods used in the production of hydrogen Discusses the hydrogen economy and its potential to replace fossil fuels as our primary source of energy Details the methods of hydrogen production using fossil fuels, also exploring sustainable extraction methods of hydrogen production from water and hydrogen purification processes.