Recent development of hydrogen and fuel cell technologies: A review
Современное развитие технологий водородной энергетики и топливных элементов: обзор
2021-08-27
SCID: 54.1/7dcm4xye
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automotive applicationshydrogen economyhydrogen infrastructureproton-exchange membrane fuel cellsthermal and water management
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Abstract (AI)
Hydrogen has emerged as a new energy vector beyond its usual role as an industrial feedstock, primarily for the production of ammonia, methanol, and petroleum refining. In addition to environmental sustainability issues, energy-scarce developed countries, such as Japan and Korea, are also facing an energy security issue, and hydrogen or hydrogen carriers, such as ammonia and methylcyclohexane, seem to be options to address these long-term energy availability issues. China has been eagerly developing renewable energy and hydrogen infrastructure to meet their sustainability goals and the growing energy demand. In this review, we focus on hydrogen electrification through proton-exchange membrane fuel cells (PEMFCs), which are widely believed to be commercially suitable for automotive applications, particularly for vehicles requiring minimal hydrogen infrastructure support, such as fleets of taxies, buses, and logistic vehicles. This review covers all the key components of PEMFCs, thermal and water management, and related characterization techniques. A special consideration of PEMFCs in automotive applications is the highlight of this work, leading to the infrastructure development for hydrogen generation, storage, and transportation. Furthermore, national strategies toward the use of hydrogen are reviewed, thereby setting the rationale for the hydrogen economy.
Key Findings
1
Hydrogen carriers, including ammonia and methylcyclohexane, are identified as potential options for addressing long-term energy availability and transport challenges.
2
Hydrogen is increasingly viewed as an energy vector supporting both environmental sustainability and long-term energy security in countries such as Japan, Korea, and China.
3
Hydrogen vehicle deployment depends on coordinated development of hydrogen generation, storage, transportation infrastructure, and national hydrogen strategies.
4
Proton-exchange membrane fuel cells are highlighted as commercially suitable for automotive applications, especially taxis, buses, and logistics vehicles requiring limited hydrogen infrastructure.
5
The review examines PEMFC components, thermal and water management, and characterization techniques, with particular emphasis on automotive operation.
Research Object
hydrogen and proton-exchange membrane fuel cell (PEMFC) technologies, particularly PEMFCs for automotive applications
Research Subject
the development, key components, thermal and water management, characterization, infrastructure requirements, and national strategies associated with hydrogen-powered PEMFC automotive systems
Publication Details
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2021-08-27
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