LAPSE:2023.27501
Published Article
LAPSE:2023.27501
Electrolyte-Assisted Hydrogen Cycling in Lithium and Sodium Alanates at Low Pressures and Temperatures
Jason Graetz, John J. Vajo
April 4, 2023
Abstract
An investigation of electrolyte-assisted hydrogen storage reactions in complex aluminum hydrides (LiAlH4 and NaAlH4) reveals significantly reduced reaction times for hydrogen desorption and uptake in the presence of an electrolyte. LiAlH4 evolves ~7.8 wt% H2 over ~3 h in the presence of a Li-KBH4 eutectic at 130 °C compared to ~25 h for the same material without the electrolyte. Similarly, NaAlH4 exhibits 4.8 wt% H2 evolution over ~4 h in the presence of a diglyme electrolyte at 150 °C compared to 4.4 wt% in ~15 h for the same material without the electrolyte. These reduced reaction times are composed of two effects, an increase in reaction rates and a change in the reaction kinetics. While typical solid state dehydrogenation reactions exhibit kinetics with rates that continuously decrease with the extent of reaction, we find that the addition of an electrolyte results in rates that are relatively constant over the full desorption window. Fitting the kinetics to an Avrami-Erofe’ev model supports these observations. The desorption rate coefficients increase in the presence of an electrolyte, suggesting an increase in the velocities of the reactant-product interfaces. In addition, including an electrolyte increases the growth parameters, primarily for the second desorption steps, resulting in the observed relatively constant reaction rates. Similar effects occur upon hydrogen uptake in NaH/Al where the presence of an electrolyte enables hydrogenation under more practical low temperature (75 °C) and pressure (50 bar H2) conditions.
Keywords
alanates 4, dehydrogenation 3, electrolyte 5, Hydrogen Storage 1, hydrogenation 2
Suggested Citation
Graetz J, Vajo JJ. Electrolyte-Assisted Hydrogen Cycling in Lithium and Sodium Alanates at Low Pressures and Temperatures. (2023). LAPSE:2023.27501
Author Affiliations
Graetz J: HRL Laboratories, LLC, Malibu, CA 90265, USA [ORCID]
Vajo JJ: HRL Laboratories, LLC, Malibu, CA 90265, USA
Journal Name
Energies
Volume
13
Issue
22
Article Number
E5868
Year
2020
Publication Date
2020-11-10
ISSN
1996-1073
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PII: en13225868, Publication Type: Journal Article
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