燃料电池电动汽车车载储氢技术的现状

Q2 Engineering Designs Pub Date : 2023-08-02 DOI:10.3390/designs7040097
J. A. Gómez, D. Santos
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引用次数: 1

摘要

氢作为一种能源载体可以帮助工业、建筑和运输部门脱碳,并用于燃料电池发电、发电或供热。解决气候危机的众多方法之一是使道路上的车辆尽可能清洁。燃料电池电动汽车(FCEV)在储存化学能并将其转化为零二氧化碳排放的电力方面表现出了很高的潜力。这篇综述论文全面评估了氢作为减少运输中温室气体排放的创新替代品的潜力,特别是车载应用。为了评估该行业的现状和未来挑战,这项工作分析了FCEV背后的技术和车载应用的储氢方法,然后进行了市场审查。研究发现,为了实现远程自主(超过500公里),FCEV必须能够在700巴的压力下在压缩容器中储存5-10公斤氢气,其中IV型容器是使用中的主要选择。碳纤维是船舶制造中最昂贵的部件,占总成本的50%以上。然而,FCEV存储系统的成本已大幅下降,目前估计约为15.7美元/千瓦时,预计到2030年将降至8美元/千瓦小时。2021年,丰田、现代、梅赛德斯-奔驰和本田是全球提供FCEV技术的主要汽车品牌。尽管物理和化学储存技术预计对氢经济有价值,但压缩氢储存仍然是车载应用中最先进的技术。
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The Status of On-Board Hydrogen Storage in Fuel Cell Electric Vehicles
Hydrogen as an energy carrier could help decarbonize industrial, building, and transportation sectors, and be used in fuel cells to generate electricity, power, or heat. One of the numerous ways to solve the climate crisis is to make the vehicles on our roads as clean as possible. Fuel cell electric vehicles (FCEVs) have demonstrated a high potential in storing and converting chemical energy into electricity with zero carbon dioxide emissions. This review paper comprehensively assesses hydrogen’s potential as an innovative alternative for reducing greenhouse gas (GHG) emissions in transportation, particularly for on-board applications. To evaluate the industry’s current status and future challenges, the work analyses the technology behind FCEVs and hydrogen storage approaches for on-board applications, followed by a market review. It has been found that, to achieve long-range autonomy (over 500 km), FCEVs must be capable of storing 5–10 kg of hydrogen in compressed vessels at 700 bar, with Type IV vessels being the primary option in use. Carbon fiber is the most expensive component in vessel manufacturing, contributing to over 50% of the total cost. However, the cost of FCEV storage systems has considerably decreased, with current estimates around 15.7 $/kWh, and is predicted to drop to 8 $/kWh by 2030. In 2021, Toyota, Hyundai, Mercedes-Benz, and Honda were the major car brands offering FCEV technology globally. Although physical and chemical storage technologies are expected to be valuable to the hydrogen economy, compressed hydrogen storage remains the most advanced technology for on-board applications.
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来源期刊
Designs
Designs Engineering-Engineering (miscellaneous)
CiteScore
3.90
自引率
0.00%
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0
审稿时长
11 weeks
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