Hydrogen storage in liquid hydrogen carriers: recent activities and new trends

Hydrogen storage in liquid hydrogen carriers: recent activities and new trends
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DOI:
10.1088/2516-1083/acac5c
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发表时间:
2022-12
期刊:
Progress in Energy
影响因子:
--
通讯作者:
T. H. Ulucan;S. Akhade;A. Ambalakatte;T. Autrey;A. Cairns;Ping Chen;Y. Cho;F. Gallucci;
T. H. Ulucan;S. Akhade;A. Ambalakatte;T. Autrey;A. Cairns;Ping Chen;Y. Cho;F. Gallucci;
中科院分区:
其他
文献类型:
--
作者:
T. H. Ulucan;S. Akhade;A. Ambalakatte;T. Autrey;A. Cairns;Ping Chen;Y. Cho;F. Gallucci;

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氢的有效储存是实现潜在氢经济的最大挑战之一。在液体载体中储存氢是在低温下压缩或液化的有吸引力的替代方案。液体运输工具可以经济有效地储存,运输和配送可以集成到现有的基础设施中。高效液体载体的开发是国际能源署任务40的一部分:基于氢的能源储存。在这里,我们报告了最先进的氨和封闭的二氧化碳循环甲醇为基础的存储选项,以及液体有机氢载体。
Efficient storage of hydrogen is one of the biggest challenges towards a potential hydrogen economy. Hydrogen storage in liquid carriers is an attractive alternative to compression or liquefaction at low temperatures. Liquid carriers can be stored cost-effectively and transportation and distribution can be integrated into existing infrastructures. The development of efficient liquid carriers is part of the work of the International Energy Agency Task 40: Hydrogen-Based Energy Storage. Here, we report the state-of-the-art for ammonia and closed CO2-cycle methanol-based storage options as well for liquid organic hydrogen carriers.