Liquid Hydrogen: A Review on Liquefaction, Storage, Transportation, and Safety

液化 氢气储存 液态氢 压缩氢 能量载体 氢技术 吸附低温 高压电解 制氢 氢燃料 废物管理 环境科学 温室气体 氢经济 工艺工程 化学 工程类 有机化学 生物 电解质 物理化学 电解 生态学 电极
作者
Muhammad Aziz
出处
期刊:Energies [Multidisciplinary Digital Publishing Institute]
卷期号:14 (18): 5917-5917 被引量:667
标识
DOI:10.3390/en14185917
摘要

Decarbonization plays an important role in future energy systems for reducing greenhouse gas emissions and establishing a zero-carbon society. Hydrogen is believed to be a promising secondary energy source (energy carrier) that can be converted, stored, and utilized efficiently, leading to a broad range of possibilities for future applications. Moreover, hydrogen and electricity are mutually converted, creating high energy security and broad economic opportunities toward high energy resilience. Hydrogen can be stored in various forms, including compressed gas, liquid hydrogen, hydrides, adsorbed hydrogen, and reformed fuels. Among these, liquid hydrogen has advantages, including high gravimetric and volumetric hydrogen densities and hydrogen purity. However, liquid hydrogen is garnering increasing attention owing to the demand for long storage periods, long transportation distances, and economic performance. This paper reviews the characteristics of liquid hydrogen, liquefaction technology, storage and transportation methods, and safety standards to handle liquid hydrogen. The main challenges in utilizing liquid hydrogen are its extremely low temperature and ortho- to para-hydrogen conversion. These two characteristics have led to the urgent development of hydrogen liquefaction, storage, and transportation. In addition, safety standards for handling liquid hydrogen must be updated regularly, especially to facilitate massive and large-scale hydrogen liquefaction, storage, and transportation.
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