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Thermodynamic stability of clathrate

H. Tanaka and K. Kiyohara, The thermodynamic stability of clathrate hydrate. II. Simultaneous occupation of larger and smaller cages , J. Chem. Phys. 98 (1993) 8110. [Pg.576]

STATISTICAL MECHANICAL APPROACH TO THE THERMODYNAMIC STABILITY OF CLATHRATE HYDRATES... [Pg.421]

VII. Application to Thermodynamic Stability of Clathrate Hydrates A. Chemical Potential of Ices and Empty Clathrate Hydrates... [Pg.421]

The chemical potential difference is tabulated in Table III [17,18]. There are small but nonmegligible differences depending on both the method and the pair potential. Two distinctive features are noteworthy. CS-II is more stable than CS-I irrelevant as to whether the anharmonic free energy is taken into account for the TIP4P potential (all the properties are calculated for clathrate hydrates with this potential unless otherwise mentioned) [52]. This is also true for most of the other pair potential of water such as SPC/E [53]. The chemical potential difference is negative for most of the potential but it is positive for the CC potential [54] and other potentials with the same functional form, which is favorable to observe a hydration structure around a hydrophobic solute but is inappropriate to evaluate the thermodynamic stability of clathrate hydrates. [Pg.447]

It is highly desirable to establish a relationship between reduction of the dissociation pressure and the efficiency as hydrogen storage in a wide range of pressure with varying composition of a promoter species. To this end, we should find a simple way to evaluate the thermodynamic stability of clathrate hydrates and its cage occupancy from intermolecular interactions currently available under a fixed occupancy of a promoter guest elaborated in Section III.D. Since the chemical potential of water is written as... [Pg.451]

H. Tanaka,/. Chem. Phys., 101, 10833 (1994). The Thermodynamic Stability of Clathrate Hydrate. III. Accommodation of Nonspherical Propane and Ethane Molecules. [Pg.385]

H. Tanaka and M. Matsumoto,/. Phys. Chem. B, 115, 14256 (2011). On the Thermodynamic Stability of Clathrate Hydrates V Phase Behaviors Accommodating Large Guest Molecules with New Reference States. [Pg.385]


See other pages where Thermodynamic stability of clathrate is mentioned: [Pg.89]    [Pg.533]    [Pg.534]    [Pg.535]    [Pg.545]    [Pg.553]    [Pg.576]    [Pg.421]    [Pg.425]    [Pg.426]    [Pg.447]    [Pg.319]    [Pg.385]    [Pg.386]   


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