Phases and pressure-temperature (P-T) relationship of CH4-H2O binary system were observed in situ by diamond anvil cell (DAC) and Raman spectroscopy under various temperature and pressure. The system shows three states: (1) State I: methane in low density and immiscible with water at 75-150 degrees C and 80-189 MPa; (2) State II: methane in high density and immiscible with water at 175-220 degrees C and 265-303 MPa; and (3) State III: methane dissolved in water at above 225 degrees C and 303 MPa. Pressure drops by about 100 MPa in the system when the state transforms from II to III, indicating negative excess volume during the transition. Raman spectra of methane show discontinuity between State II and III, indicating multi-component intera...
The diffusion coefficient of methane in water plays an important role in the formation and dissociat...
The in situ high pressure Raman spectrum of CD4 was found to be subtly different from its’ hydrogeno...
The in situ high pressure Raman spectrum of CD_{4} was found to be subtly different from its’ hydrog...
The dissociation of methane hydrate at high pressure is studied by in situ Raman spectroscopy in a d...
In situ Raman spectroscopy is employed to study the phase behavior of methane hydrate at high pressu...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
We report on a set of Raman spectra of structure I methane hydrates under pressures of 132 similar t...
We have conducted a Raman study of methane (CH4), a major constituent of the outer planets, at press...
We have conducted a Raman study of methane (CH4), a major constituent of the outer planets, at press...
The characteristics of the H2O-CO2-CH4 fluid at high temperature were studied by Raman spectroscopy....
Gas hydrates consist of hydrogen-bonded water frameworks enclosing guest gas molecules and have been...
International audienceThe reconstruction of the entrapment conditions of geological fluids requires ...
To reveal the hydrophobic hydration process of methane molecules dissolved in water, Raman spectra o...
The diffusion coefficient of methane in water plays an important role in the formation and dissociat...
The in situ high pressure Raman spectrum of CD4 was found to be subtly different from its’ hydrogeno...
The in situ high pressure Raman spectrum of CD_{4} was found to be subtly different from its’ hydrog...
The dissociation of methane hydrate at high pressure is studied by in situ Raman spectroscopy in a d...
In situ Raman spectroscopy is employed to study the phase behavior of methane hydrate at high pressu...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
It is well known that methane hydrate undergoes several phase transformations at high pressures. At ...
We report on a set of Raman spectra of structure I methane hydrates under pressures of 132 similar t...
We have conducted a Raman study of methane (CH4), a major constituent of the outer planets, at press...
We have conducted a Raman study of methane (CH4), a major constituent of the outer planets, at press...
The characteristics of the H2O-CO2-CH4 fluid at high temperature were studied by Raman spectroscopy....
Gas hydrates consist of hydrogen-bonded water frameworks enclosing guest gas molecules and have been...
International audienceThe reconstruction of the entrapment conditions of geological fluids requires ...
To reveal the hydrophobic hydration process of methane molecules dissolved in water, Raman spectra o...
The diffusion coefficient of methane in water plays an important role in the formation and dissociat...
The in situ high pressure Raman spectrum of CD4 was found to be subtly different from its’ hydrogeno...
The in situ high pressure Raman spectrum of CD_{4} was found to be subtly different from its’ hydrog...