The Journal of Physical Chemistry B · 2008 · 59 citations · 48 references
Hydrogen Energy TechnologyChemical EngineeringEngineeringHydrogen TransportNatural Gas Hydrate SystemMedium CavitiesHydrogen-bonded LiquidSh HydratesPhysical ChemistryHydrogen UtilizationComputational ChemistryHydrogenChemistryGas HydrateNatural Gas HydrateHydrogen HydratesBiophysics
Grand canonical Monte Carlo simulations are performed to evaluate the hydrogen-storage capacity of the recently discovered hydrogen hydrates of the sH type, at 274 K and up to 500 MPa. First, the pure H2 hydrate is investigated in order to determine the upper limit of H 2 content in sH hydrates. It is found that the storage capacity of the hypothetical pure H2 hydrate could reach 3.6 wt % at 500 MPa. Depending on pressure, the large cavity of this hydrate can accommodate up to eight H2 molecules, while the small and medium ones are singly occupied even at pressures as high as 500 MPa. Next, the binary H2-methylcyclohexane sH hydrate is examined. In this case, the small and medium cavities are again singly occupied, resulting in a maximum H2 uptake of 1.4 wt %. Finally, the results from simulations on pure H2 and binary hydrates are utilized to investigate the potential of H2 storage in sH hydrates where the promoter molecules occupy the medium instead of the large cavities.
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Equation of State Calculations by Fast Computing Machines
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