On the basis of the hot brine in situ seafloor prepared for marine NGHs exploitation, formation kinetic behavior of cyclopentane (CP)-methane hydrate was studied at various depths of ocean water. The effects of the temperature, pressure, gas liquid ratio, and ratio of CP/liquid phase on gas uptake were investigated to reveal the affecting factors of the hydrate rapid formation. The experimental results indicated that the driving force played an important role in the hydrate formation. In addition, the CP/liquid phase ratio of 5% was beneficial to gas uptake. When the conditions of driving force and the CP/liquid phase ratio were very favorable for hydrate formation, the gas uptakes slightly change with the gas liquid ratio. In contrast, a s...
The phase equilibrium data of cyclopentane (CP) + methane hydrates in brine water with NaCl mass fra...
Cyclopentane (CP) is an alkane that combines with water to form hydrates. Here, we investigate the h...
Cyclopentane(CP) as an efficient promoter has not been evaluated for capturing CO2 form fuel gas via...
BaSed on the hot brine in situ seafloor prepared for marine NGHs exploitation, the formation of hydr...
The kinetics of the formation of cyclopentane (CP) + methane (CH4) hydrates are studied to find the ...
In this work, the formation kinetics of cyclopentane (CP) + methane hydrate is studied. CP is used a...
The formation kinetics of cyclo-pentane(CP)-methane hydrate in Na Cl solution were studied using a b...
The kinetics of methane hydrate formation in marine sediments with different water saturations are i...
International audienceClathrate hydrates most often grow at the interface between liquid water and a...
In this work, temperature characteristics during hydrate formation were investigated in the cyclopen...
The effects of the flow rates of cyclopentane (CP) and methane gas, operating pressure, and experime...
Methane hydrate applications in gas storage and desalination have attracted increasing attention in ...
The gas production behavior from methane hydrate in porous sediment by injecting the brine with the ...
Abstract Gas hydrates are often found in the systems for production of petroleum, natural gas and wa...
An energy-efficient hydrate-based warm brine preparation method in situ seafloor was first proposed ...
The phase equilibrium data of cyclopentane (CP) + methane hydrates in brine water with NaCl mass fra...
Cyclopentane (CP) is an alkane that combines with water to form hydrates. Here, we investigate the h...
Cyclopentane(CP) as an efficient promoter has not been evaluated for capturing CO2 form fuel gas via...
BaSed on the hot brine in situ seafloor prepared for marine NGHs exploitation, the formation of hydr...
The kinetics of the formation of cyclopentane (CP) + methane (CH4) hydrates are studied to find the ...
In this work, the formation kinetics of cyclopentane (CP) + methane hydrate is studied. CP is used a...
The formation kinetics of cyclo-pentane(CP)-methane hydrate in Na Cl solution were studied using a b...
The kinetics of methane hydrate formation in marine sediments with different water saturations are i...
International audienceClathrate hydrates most often grow at the interface between liquid water and a...
In this work, temperature characteristics during hydrate formation were investigated in the cyclopen...
The effects of the flow rates of cyclopentane (CP) and methane gas, operating pressure, and experime...
Methane hydrate applications in gas storage and desalination have attracted increasing attention in ...
The gas production behavior from methane hydrate in porous sediment by injecting the brine with the ...
Abstract Gas hydrates are often found in the systems for production of petroleum, natural gas and wa...
An energy-efficient hydrate-based warm brine preparation method in situ seafloor was first proposed ...
The phase equilibrium data of cyclopentane (CP) + methane hydrates in brine water with NaCl mass fra...
Cyclopentane (CP) is an alkane that combines with water to form hydrates. Here, we investigate the h...
Cyclopentane(CP) as an efficient promoter has not been evaluated for capturing CO2 form fuel gas via...