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◆ Next Energy2026-03-04· Renewable energy

Low-carbon energy storage via liquid organic hydrogen carriers: From new developments to global initiatives

Somtochukwu Godfrey Nnabuife, Abdulhammed K. Hamzat, Caleb Kwasi Darko, Chinonyelum Udemu, Kwamena Ato Quainoo, Jinyan Yang, Boyu Kuang

原始摘要(英文原文)· Original abstract
Liquid organic hydrogen carriers (LOHCs) are a promising approach for long-term, low-carbon energy storage via hydrogen, due to their safety profile and compatibility with existing infrastructure. These properties also make it possible for them to efficiently transport and distribute large-scale hydrogen over long distances. This review explores recent advancements in LOHC technology, focusing on innovations that improve hydrogen storage capacity, techno-economics, and environmental impacts of LOHCs. Additionally, it examines global initiatives aimed at scaling LOHC systems for large-scale hydrogen storage and transport whilst highlighting collaborations, policy frameworks, and investment trends that support the integration of LOHC into renewable energy infrastructure. LOHC has the potential to play a critical role in achieving global decarbonization goals by facilitating the safe and reusable storage of low-carbon hydrogen. However, technological challenges persist, and more research is needed to maximize their overall thermal efficiency and market adoption. • Review and analysis of LCA and economic studies of LOHC for hydrogen storage. • LOHCs-renewable H 2 systems can reduce emissions if powered by clean sources. • Intensified reactor designs show promise for efficient LOHC dehydrogenation. • Commercial viability of LOHC technology is evidenced by ongoing large-scale projects.
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