The success of hydrogen energy markets depends on developing efficient hydrogen storage and transportation methods. This book comprehensively reviews hydrogen storage and transportation technologies along with related safety hazards and challenges.
Section I: An Overview of Hydrogen Storage and Transportation Technologies. 1. Introduction to Hydrogen Storage, Transportation, and Distribution Technologies and Challenges. 2. Engineering Properties of Hydrogen Storage Materials. Section II: Hydrogen Storage and Transportation Methods. 3. Liquid Hydrogen Carriers. 4. Pressurized Gaseous Hydrogen Storage. 5. LowTemperature Liquefaction Hydrogen Storage. 6. Carbonaceous Materials for Hydrogen Storage. 7. Glass Microspheres for Hydrogen Storage. 8. MetalOrganic Frameworks (MOF) for Hydrogen Storage. 9. Pipelines for Hydrogen Transportation. 10. Cryogenic Liquid Tankers for Hydrogen Transportation. Section III: Hydrogen Storage and Transportation Safety Considerations. 11. Prevention of Hydrogen Pipeline Cracking and Leakage. 12. Delayed Hydrogen Ignition and Explosion. 13. Liquid Hydrogen Release from Pressurized and Nonpressurized Tanks.
The success of hydrogen energy markets depends on developing efficient hydrogen storage and transportation methods. Hydrogen may be stored in various ways, including compression, liquefaction, adsorption, hydrides, and reformed fuels. Hydrogens application, transport method, storage time, and other factors all have an impact on the technology choices available for its longterm storage. This book comprehensively reviews hydrogen storage and transportation technologies along with related safety hazards and challenges.
- Introduces hydrogen storage and transportation materials and standards
- Includes miscellaneous hydrogen storage methods
- Covers different hydroglă-