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Metal Alloys for Hydrogen Storage Applications

Solid-State Hydrogen Storage in Metal-Based Materials

Paperback Engels 2025 9780443290626
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Samenvatting

Metal Alloys for Hydrogen Storage Applications: Solid-State Hydrogen Storage in Metal-Based Materials provides an overview of the fundamentals, mechanics, processing, and application of various metal alloys, intermetallics, metal matrix composites, metal oxides, and other lightweight metal materials for use in hydrogen storage. Titanium-based, magnesium-based, binary type, and high entropy alloys are each covered, as are hydrogen bonding systems, the effects of alloy microstructure on hydrogen storage capacity and efficiency, alloy modifiers, and coatings and additives for alloys. Modeling techniques and approaches to additive manufacturing of components for hydrogen energy storages are also outlined, and various applications are included throughout.

Specificaties

ISBN13:9780443290626
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

1. Introduction to Hydrogen Energy Storage in Metals<br>2. Solid-State Hydrogen Storage Materials, Technologies, and Requirements for Hydrogen Energy Storage and Utilization<br>3. Hydrogen Bonding System in Metal Alloys<br>4. Kinetics and Thermodynamics of Solid-State Absorption-Desorption Hydrogen Energy Storage Systems<br>5. Effects of Microstructures on the Hydrogen Energy Storage Capacity and Efficiency of Metal Alloys<br>6. Modifiers of Metal Alloys for Hydrogen Energy Storage<br>7. Titanium-Based Alloys for Hydrogen Storage Applications<br>8. Magnesium-Based Alloys for Hydrogen Storage Applications<br>9. Binary-Type (AB5, AB, A2B and AB2) Alloys For Hydrogen Storage Applications<br>10. High Entropy Alloys (HEAs) for Hydrogen Storage Applications<br>11. Other Metal Alloys and Intermetallics for Hydrogen Storage Applications<br>12. Metal Matrix Composites for Hydrogen Storage Applications<br>13. Metal Oxides as Host for Hydrogen Energy Storage Applications<br>14. Coatings and Additives for Hydrogen Storage in Metal Alloys<br>15. Other Lightweight Materials for Hydrogen Energy Storage Applications<br>16. Processing of Metal Alloys for Hydrogen Storage<br>17. Additive Manufacturing of 3D Printed Components for Hydrogen Energy Storages Technologies<br>18. Modeling of Metal-Based Alloys for Hydrogen Energy Storage<br>19. The Adoption of Metal Alloys as Hydrogen Storage Materials for Different Energy Applications<br>20. Energy Usage and Consumption in Processing and Production of Metallic Materials for Cost-Effective Hydrogen Energy Applications<br>21. Conclusion: Future Trends, Challenges and Recommendations for Metal Alloys as Hydrogen Energy Storage Materials

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        Metal Alloys for Hydrogen Storage Applications