Publication | Closed Access
Size-Dependent Kinetic Enhancement in Hydrogen Absorption and Desorption of the Li−Mg−N−H System
247
Citations
33
References
2009
Year
Hydrogen Energy TechnologyHydrogen ProductionEngineeringHydrogen AbsorptionChemistryHydrogen GenerationChemical EngineeringSize-dependent Kinetic EnhancementHigh Operating TemperatureMaterials ScienceChemisorptionLi−mg−n−h SystemEnergy StoragePhysical ChemistryHydrogen UtilizationHydrogen Production TechnologyCatalysisHydrogenDehydrogenation KineticsEnhanced KineticsChemical Kinetics
High operating temperature and slow kinetics retard the practical applications of the Li-Mg-N-H system for hydrogen storage. To alleviate these problems, a first attempt was carried out by synthesizing Li(2)MgN(2)H(2) through sintering a mixture of Mg(NH(2))(2)-2LiNH(2) and investigating its size-dependent hydrogen storage performance. A dramatically enhanced kinetics for hydrogen absorption/desorption was achieved with a reduction in the particle size. For the dehydrogenation reaction, a three-dimensional diffusion-controlled kinetic mechanism was identified for the first time by analyzing isothermal hydrogen desorption curves with a linear plot method. The experimental improvement and mechanistic understanding on the dehydrogenation kinetics of the Li-Mg-N-H system shed light on how to further decrease the operating temperature and enhance the hydrogen absorption/desorption rate of the amide/hydride combined materials.
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