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Reversible Storage of Hydrogen in Destabilized LiBH<sub>4</sub>

The Journal of Physical Chemistry B · 2005 · Vol. 109(9) · pp. 3719–3722
John J. VajoSky L. SkeithFlorian Mertens

Abstract

Destabilization of LiBH4 for reversible hydrogen storage has been studied using MgH2 as a destabilizing additive. Mechanically milled mixtures of LiBH4 + (1/2)MgH2 or LiH + (1/2)MgB2 including 2-3 mol % TiCl3 are shown to reversibly store 8-10 wt % hydrogen. Variation of the equilibrium pressure obtained from isotherms measured at 315-400 degrees C indicate that addition of MgH2 lowers the hydrogenation/dehydrogenation enthalpy by 25 kJ/(mol of H2) compared with pure LiBH4. Formation of MgB2 upon dehydrogenation stabilizes the dehydrogenated state and, thereby, destabilizes the LiBH4. Extrapolation of the isotherm data yields a predicted equilibrium pressure of 1 bar at approximately 225 degrees C. However, the kinetics were too slow for direct measurements at these temperatures.

Hydrogen Storage and MaterialsHybrid Renewable Energy SystemsSuperconductivity in MgB2 and AlloysDehydrogenationHydrogen storageBar (unit)ExtrapolationHydrogenKineticsEnthalpyThermodynamicsChemistryPhysical chemistry
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References
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