Techno-Economic Analysis of Hydrogen Storage Technologies for Railway Engineering: A Review.
Author(s) : XU Z., ZHAO N., HILLMANSEN S., ROBERTS C., YAN Y.
Type of article: Periodical article, Review
Summary
According to the specific requirements of railway engineering, a techno-economic comparison for onboard hydrogen storage technologies is conducted to discuss their feasibility and potentials for hydrogen-powered hybrid trains. Physical storage methods, including compressed hydrogen (CH2), liquid hydrogen (LH2), and cryo-compressed hydrogen (CcH2), and material-based (chemical) storage methods, such as ammonia, liquid organic hydrogen carriages (LOHCs), and metal hydrides, are carefully discussed in terms of their operational conditions, energy capacity, and economic costs. CH2 technology is the most mature now but its storage density cannot reach the final target, which is the same problem for intermetallic compounds. In contrast, LH2, CcH2, and complex hydrides are attractive for their high storage density. Nevertheless, the harsh working conditions of complex hydrides hinder their vehicular application. Ammonia has advantages in energy capacity, utilisation efficiency and cost, especially being directly utilised by fuel cells. LOHCs are now considered as a potential candidate for hydrogen transport. Simplifying the dehydrogenation process is the important prerequisite for its vehicular employment. Recently, increasing novel hydrogen-powered trains based on different hydrogen storage routes are being tested and optimised across the world. It can be forecasted that hydrogen energy will be a significant booster to railway decarbonisation.
Available documents
Format PDF
Pages: 22 p.
Available
Free
Details
- Original title: Techno-Economic Analysis of Hydrogen Storage Technologies for Railway Engineering: A Review.
- Record ID : 30030419
- Languages: English
- Subject: Technology
- Source: Energies - 15 - 17
- Publishers: MDPI
- Publication date: 2022/09
- DOI: http://dx.doi.org/10.3390/en15176467
Links
See other articles in this issue (13)
See the source
Indexing
-
Hydrogen liquefaction: a review of the fundamen...
- Author(s) : AL GHAFRI S. Z. S., MUNRO S., CARDELLA U., FUNKE T., NOTARDONATO W., TRUSLER J. P. M., LEACHMAN J., SPAN R., KAMIYA S., PEARCE G., SWANGER A., RODRIGUEZ E. D., BAJADA P., JIAO F., PENG K., SIAHVASHI A., JOHNS M. L., MAY E. F.
- Date : 2022/07
- Languages : English
- Source: Energy & Environmental Science - vol. 15 - 7
- Formats : PDF
View record
-
Numerical simulation on pressure evolution proc...
- Author(s) : WAN C., ZHU S., SHI C., BAO S., ZHI X., QIU L., WANG K.
- Date : 2023/06
- Languages : English
- Source: International Journal of Refrigeration - Revue Internationale du Froid - vol. 150
- Formats : PDF
View record
-
Analysis and optimization of thermal stratifica...
- Author(s) : GURSU S., SHERIF S. A., VEZIROGLU T. N., SHEFFIELD J. W.
- Date : 1993
- Languages : English
- Source: J. Energy Resour. Technol. - vol. 115 - n. 3
View record
-
The development of methods and means for long-t...
- Author(s) : CHEREMNYKH O. Y.
- Date : 2012/09/11
- Languages : English
- Source: Cryogenics 2012. Proceedings of the 12th IIR International Conference: Dresden, Germany, September 11-14, 2012.
- Formats : PDF
View record
-
CRYOGENIC VALVE ACTUATOR.
- Author(s) : RUPPERT U.
- Date : 1990
- Languages : English
- Source: Cryogenics - vol. 30 - n. 3
View record