Experiments on sII binary hydrogen hydrate phase boundary conditions of the cyclopentane/tetrahydrofuran/tert-butylamine/acetone-hydrogen-water system were conducted in a high pressure visual sapphire reactor to obtain the phase equilibrium data for hydrogen hydrate. On the basis of the experimental data
the dissociation enthalpy of sII binary hydrogen hydrate was calculated with the Clausius-Clapeyron equation. The results show that the phase equilibrium pressure of sII binary hydrogen hydrate is one-tenth or even more lower that of hydrogen hydrate without additives. The dissociation enthalpy of sII binary hydrogen hydrate is related to the additives and the phase equilibrium temperature
and with the same kind of additives the dissociation enthalpy of the binary hydrogen hydrate increases with the phase equilibrium temperature. The results of this study may lead to the development of hydrogen storage by hydrate technique.
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