Affiliation:
1. Department of Mechanical, Energy and Management Engineering, University of Calabria, Arcavacata di Rende, 87036 Cosenza, Italy
2. Department of Technology, Hydrogen Research and Fueling Facility, California State University Los Angeles, Los Angeles, CA 90032, USA
3. Hydrogen Research and Fueling Facility, California State University Los Angeles, Los Angeles, CA 90032, USA
Abstract
The present paper offers a thorough examination of the safety measures enforced at hydrogen filling stations, emphasizing their crucial significance in the wider endeavor to advocate for hydrogen as a sustainable and reliable substitute for conventional fuels. The analysis reveals a wide range of crucial safety aspects in hydrogen refueling stations, including regulated hydrogen dispensing, leak detection, accurate hydrogen flow measurement, emergency shutdown systems, fire-suppression mechanisms, hydrogen distribution and pressure management, and appropriate hydrogen storage and cooling for secure refueling operations. The paper therefore explores several aspects, including the sophisticated architecture of hydrogen dispensers, reliable leak-detection systems, emergency shut-off mechanisms, and the implementation of fire-suppression tactics. Furthermore, it emphasizes that the safety and effectiveness of hydrogen filling stations are closely connected to the accuracy in the creation and upkeep of hydrogen dispensers. It highlights the need for materials and systems that can endure severe circumstances of elevated pressure and temperature while maintaining safety. The use of sophisticated leak-detection technology is crucial for rapidly detecting and reducing possible threats, therefore improving the overall safety of these facilities. Moreover, the research elucidates the complexities of emergency shut-off systems and fire-suppression tactics. These components are crucial not just for promptly managing hazards, but also for maintaining the station’s structural soundness in unanticipated circumstances. In addition, the study provides observations about recent technical progress in the industry. These advances effectively tackle current safety obstacles and provide the foundation for future breakthroughs in hydrogen fueling infrastructure. The integration of cutting-edge technology and materials, together with the development of upgraded safety measures, suggests a positive trajectory towards improved efficiency, dependability, and safety in hydrogen refueling stations.
Reference84 articles.
1. Dagdougui, H., Sacile, R., Bersani, C., and Ouammi, A. (2018). Hydrogen Infrastructure for Energy Applications, Academic Press.
2. Renewable Hydrogen Economy Outlook in Africa;Mukelabai;Renew. Sustain. Energy Rev.,2022
3. BDI Department Energy and Climate Policy (2023, December 01). Bringing a European Hydrogen Economy to Scale. Available online: https://english.bdi.eu/publication/news/bringing-a-european-hydrogen-economy-to-scale/.
4. Hydrogen Energy, Economy and Storage: Review and Recommendation;Abe;Int. J. Hydrogen Energy,2019
5. The Evaluation of Hydrogen Fuel Stations by Citizens: The Interrelated Effects of Socio-Demographic, Spatial and Psychological Variables;Huijts;Int. J. Hydrogen Energy,2015
Cited by
7 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献