Zell T. Hydrogen Storage. Based on Hydrogenation and Dehydrogenation...2019
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Hydrogen is believed to be the energy source of the future, enabling zero-emission and efficient production of power. This comprehensive publication presents a broad spectrum of various chemical aspects of hydrogen storage. The authors also address global climate change issues, carbon dioxide sequestration problems and CO2-based hydrogen storage.
Gives an in-depth overview of how hydrogen can be generated from a variety of sources.
Explores the technical challenges and state-of-the-art in hydrogen storage.
Discusses how to eliminate carbon dioxide during hydrogen production.
Introduction: hydrogen storage as solution for a changing energy landscape
CO2-based hydrogen storage: CO2 hydrogenation to formic acid, formaldehyde and methanol
CO2-based hydrogen storage – formic acid dehydrogenation
CO2-based hydrogen storage – Hydrogen generation from formaldehyde/water
CO2-based hydrogen storage – hydrogen liberation from methanol/water mixtures and from anhydrous methanol
Hydrogenation of carbonyl compounds of relevance to hydrogen storage in alcohols
Dehydrogenation of alcohols and polyols from a hydrogen production perspective
Hydrogenation of nitriles and imines for hydrogen storage
Transition metal-catalyzed dehydrogenation of amines
Homogeneously catalyzed hydrogenation and dehydrogenation reactions – From a mechanistic point of view