Hydrogen Storage for Mobility: A Review
Хранение водорода для транспорта: обзор
2019-06-19
SCID: 54.1/6c74b63d
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boil-offcompressed hydrogenhydrogen storage for mobilitythermal managementvolumetric and gravimetric energy density
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Abstract (AI)
Numerous reviews on hydrogen storage have previously been published. However, most of these reviews deal either exclusively with storage materials or the global hydrogen economy. This paper presents a review of hydrogen storage systems that are relevant for mobility applications. The ideal storage medium should allow high volumetric and gravimetric energy densities, quick uptake and release of fuel, operation at room temperatures and atmospheric pressure, safe use, and balanced cost-effectiveness. All current hydrogen storage technologies have significant drawbacks, including complex thermal management systems, boil-off, poor efficiency, expensive catalysts, stability issues, slow response rates, high operating pressures, low energy densities, and risks of violent and uncontrolled spontaneous reactions. While not perfect, the current leading industry standard of compressed hydrogen offers a functional solution and demonstrates a storage option for mobility compared to other technologies.
Key Findings
1
All current hydrogen storage technologies suffer significant drawbacks such as complex thermal management, boil-off, poor efficiency, expensive catalysts, stability issues, slow response rates, high operating pressures, low energy densities, and risks of violent uncontrolled reactions.
2
Compressed hydrogen, despite shortcomings, remains the current leading industry standard and offers a functional storage solution for mobility compared to other technologies.
3
The ideal hydrogen storage medium should provide high volumetric and gravimetric energy densities, fast uptake/release, room-temperature and atmospheric-pressure operation, safety, and cost-effectiveness.
4
This review focuses specifically on hydrogen storage systems relevant for mobility applications, addressing a gap between materials-only and economy-wide reviews.
Research Object
Hydrogen storage systems for mobility applications
Research Subject
Comparative performance and practical limitations of hydrogen storage media and systems for mobility, including energy densities, uptake/release rates, operating conditions, safety, efficiency, thermal management, and cost-effectiveness
Publication Details
Publication Date
2019-06-19
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