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作 者:Alexis Munyentwali Khai Chen Tan Teng He
机构地区:[1]Dalian Institute of Chemical Physics,Chinese Academy of Sciences,Dalian,116023,China [2]Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences,Beijing,100049,China
出 处:《Progress in Natural Science:Materials International》2024年第5期825-839,共15页自然科学进展·国际材料(英文版)
基 金:supported by the National Key R&D Program of China(2023YFE0198900);the support provided by the National Natural Science Foundation of China (52171226);the University of Chinese Academy of Sciences (UCAS) and the World Academy of Sciences (TWAS) for the CAS-TWAS President's Fellowship
摘 要:The transition towards sustainable and clean energy systems has become a significant concern in the modern world. Hydrogen has the potential to meet the growing energy demands while addressing greenhouse gas emissions. However, one major obstacle in utilizing hydrogen as a fuel is the lack of efficient and cost-effective storage methods. In this regard, liquid organic hydrogen carriers(LOHCs) offer several advantages, including high hydrogen storage capacity, improved safety compared to traditional storage methods, and the ability to transport hydrogen using existing liquid fuels' infrastructure. This review summarizes advancements in the development of LOHC systems for hydrogen storage, with a focus on the latest and innovative systems such as those based on dehydrogenative coupling reactions, renewable LOHCs from lignocellulosic biomass, and the development of LOHCs from plastic waste recycling. In addition to the material aspect, this contribution also discusses various applications of LOHCs in the broader context of the hydrogen economy, including a recently proposed concept of mixed gas hydrogenation of LOHCs for realizing hydrogen purification and storage in a single process step. By highlighting the main advantages and challenges of each LOHC system and providing future directions in the development of efficient LOHC systems, this review aims to contribute to an extensive understanding and advancement of LOHCs in the evolving hydrogen-based economy.
关 键 词:Hydrogen storage Liquid organic hydrogen carriers(LOHCs) Hydrogen economy HYDROGENATION DEHYDROGENATION
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