In this paper, the solubility of methane in water along the 400 bar isobar is determined by computer simulations using the TIP4P/Ice force field for water and a simple LJ model for methane. In particular, the solubility of methane in water when in contact with the gas phase and the solubility of methane in water when in contact with the hydrate has been determined. The solubility of methane in a gas–liquid system decreases as temperature increases. The solubility of methane in a hydrate–liquid system increases with temperature. The two curves intersect at a certain temperature that determines the triple point T3 at a certain pressure. We also determined T3 by the three-phase direct coexistence method. The results of both methods agree, and ...
Methane hydrate nucleation and growth from a bulk phase has been investigated using a quiescent high...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...
In this paper, the solubility of methane in water along the 400 bar isobar is determined by computer...
To understand the prenucleation stage of methane hydrate formation, we measured methane solubility u...
We have obtained the excess chemical potential of methane in water, over a broad range of temperatur...
To understand the prenucleation stage of methane hydrate formation, we measured methane solubility u...
Natural gas hydrates are ice-like structures composed of water and gas (mostly methane) molecules. T...
At low pressures, the solubility of gases in liquids is governed by Henry’s law, which states that t...
We investigate the effects of high solvated-methane concen- tration on methane-hydrate nucleation at...
5 pagesThe ForDiMHyS project is a program devoted to experimental studies and the model development ...
We investigate the effects of high solvated-methane concen- tration on methane-hydrate nucleation at...
Clathrate hydrates are solid crystals that consist of three-dimensional networks of hydrogen-bonded ...
Methane hydrate is a fascinating physical occurrence of methane and water in solid-state. Methane Hy...
Clathrate hydrates are solid crystals that consist of three-dimensional networks of hydrogen-bonded ...
Methane hydrate nucleation and growth from a bulk phase has been investigated using a quiescent high...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...
In this paper, the solubility of methane in water along the 400 bar isobar is determined by computer...
To understand the prenucleation stage of methane hydrate formation, we measured methane solubility u...
We have obtained the excess chemical potential of methane in water, over a broad range of temperatur...
To understand the prenucleation stage of methane hydrate formation, we measured methane solubility u...
Natural gas hydrates are ice-like structures composed of water and gas (mostly methane) molecules. T...
At low pressures, the solubility of gases in liquids is governed by Henry’s law, which states that t...
We investigate the effects of high solvated-methane concen- tration on methane-hydrate nucleation at...
5 pagesThe ForDiMHyS project is a program devoted to experimental studies and the model development ...
We investigate the effects of high solvated-methane concen- tration on methane-hydrate nucleation at...
Clathrate hydrates are solid crystals that consist of three-dimensional networks of hydrogen-bonded ...
Methane hydrate is a fascinating physical occurrence of methane and water in solid-state. Methane Hy...
Clathrate hydrates are solid crystals that consist of three-dimensional networks of hydrogen-bonded ...
Methane hydrate nucleation and growth from a bulk phase has been investigated using a quiescent high...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...
Methane hydrate is a non-stoichiometric crystal in which water molecules form hydrogen-bonded cages ...