4.7 Review

Solidified Hydrogen Storage (Solid-HyStore) via Clathrate Hydrates

Journal

CHEMICAL ENGINEERING JOURNAL
Volume 431, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2021.133702

Keywords

Gas hydrate; Hydrogen storage; Clean energy; Tuning effect; Kinetics; Phase equilibrium

Funding

  1. MoE AcRF Tier 1 [R-279-000-600-114]
  2. National University of Singapore

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This article focuses on the current state of solidified hydrogen storage via clathrate hydrates and comprehensively evaluates the properties and performances of different H-2-containing hydrate systems. The controversial issues in hydrogen hydrate research, such as multiple cage occupancy by H-2 molecules and the tuning effect, are also elucidated. Finally, the challenges, limitations, and future opportunities for hydrate-based hydrogen storage are identified.
With non-renewable fossil fuels depleting rapidly, hydrogen as a clean energy source producing no pollutants or greenhouse gas emissions upon combustion is bound to play a leading role in the future energy landscape. Among the pertinent challenges in establishing a hydrogen-based economy is developing an energy dense hydrogen storage technology with easy recovery of the stored gas. Clathrate hydrates enabling the innovative solidified storage of hydrogen molecules at moderate temperature and pressure conditions carve a niche for safe, longterm, stationary hydrogen storage. This review focuses on the current state of the art for solidified hydrogen storage (Solid-HyStore) via clathrate hydrates. The properties and performances of various H-2-containing hydrate systems are evaluated and summarized comprehensively. Multiple cage occupancy by H-2 molecules and the tuning effect as the controversial issues in hydrogen hydrate research are elucidated. Finally, the challenges, limitations, and future opportunities for hydrate-based hydrogen storage are identified.

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