Ceramic Hydrogen Storage Materials : High Storage Density Candidates for Sustainable Green Energy
Book Details
Format
Paperback / Softback
ISBN-10
1032786493
ISBN-13
9781032786490
Publisher
Taylor & Francis Ltd
Imprint
CRC Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jul 19th, 2026
Print length
166 Pages
Weight
280 grams
Dimensions
15.50 x 23.50 x 1.40 cms
Product Classification:
EnergyNanotechnologyIndustrial chemistry and chemical engineeringChemical engineeringCeramic and glass technologyCeramics & glass technologyMechanical engineeringMaterials scienceAlternative and renewable energy sources and technologyAlternative & renewable energy sources & technologyAutomotive technology & tradesAutomotive technology and tradesAerospace & aviation technologyAerospace and aviation technology
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Ceramic Hydrogen Storage Materials presents the physical, chemical, physico-chemical properties of ceramics as HSMs. It demonstrates how ceramic nanostructures can be specially designed for high surface adsorption of hydrogen and act as hydrogen batteries.
Ceramic Hydrogen Storage Materials presents the physical, chemical, physico-chemical properties of ceramics as hydrogen storage materials. It demonstrates how ceramic nanostructures can be specifically designed for high surface adsorption of hydrogen and can function as hydrogen batteries. Covering methods for characterizing hydrogen storage capacity, this book showcases how hydrogen has the potential to facilitate decarbonization of the electric power sector by storing energy produced from renewable sources. It addresses both ceramic oxides and non-oxides while expanding on the synthesis and characterization of zero- and one-dimensional, high-surface-area ceramic structures. This book discusses the applications of hydrogen batteries in zero-emission vehicles and hydrogen fuels for aircraft. This book will interest upper-level undergraduate energy and materials engineering students, as well as researchers studying green energy storage materials, hydrogen storage, and alternative transportation fuels.
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