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Potential Liquid-Organic Hydrogen Carrier (LOHC) Systems: A Review on Recent Progress

Energies · 2020 · Vol. 13(22) · pp. 6040–6040
Purna Chandra RaoMinyoung Yoon

Abstract

The depletion of fossil fuels and rising global warming challenges encourage to find safe and viable energy storage and delivery technologies. Hydrogen is a clean, efficient energy carrier in various mobile fuel-cell applications and owned no adverse effects on the environment and human health. However, hydrogen storage is considered a bottleneck problem for the progress of the hydrogen economy. Liquid-organic hydrogen carriers (LOHCs) are organic substances in liquid or semi-solid states that store hydrogen by catalytic hydrogenation and dehydrogenation processes over multiple cycles and may support a future hydrogen economy. Remarkably, hydrogen storage in LOHC systems has attracted dramatically more attention than conventional storage systems, such as high-pressure compression, liquefaction, and absorption/adsorption techniques. Potential LOHC media must provide fully reversible hydrogen storage via catalytic processes, thermal stability, low melting points, favorable hydrogenation thermodynamics and kinetics, large-scale availability, and compatibility with current fuel energy infrastructure to practically employ these molecules in various applications. In this review, we present various considerable aspects for the development of ideal LOHC systems. We highlight the recent progress of LOHC candidates and their catalytic approach, as well as briefly discuss the theoretical insights for understanding the reaction mechanism.

Hydrogen Storage and MaterialsHybrid Renewable Energy SystemsAdvanced battery technologies researchHydrogen storageDehydrogenationEnergy carrierHydrogenHydrogen technologiesHydrogen economyLiquefactionCatalysisWaste managementProcess engineering

Funding

  • National Research Foundation
  • National Research Foundation of Korea
  • Ministry of Science and ICT, South Korea
Citations
319
FWCI
11.36
field-weighted impact
References
91
Percentile
99%
vs. same field & year
Citations per year
References
The properties of hydrogen as fuel tomorrow in sustainable energy system for a cleaner planet
International Journal of Hydrogen Energy · 2004 · 1,079 citations
Metal hydride materials for solid hydrogen storage: A review☆
International Journal of Hydrogen Energy · 2007 · 3,540 citations
The hydrogen economy in the 21st century: a sustainable development scenario
International Journal of Hydrogen Energy · 2002 · 953 citations
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