Experiments at 8.0 MPa and 277.15 K were carried out in different porous media, such as silica sand and activated carbon, to observe the formation and dissociation of methane hydrate in a specially designed crystallizer for mophology observation. In silica sand bed, we observed a clear hydrate front moving across the bed in the crystallizer at the experimental conditions with 50 and 100% water saturation. The hydrate crystals were observed to form in the interstitial pore space available between the silica sand particles. Whereas in activated carbon bed experiments, hydrates were observed to nucleate on the surface of the activated carbon grain and then dissociate within the stable hydrate formation region. For the first time, we were able ...
The formation of methane hydrate in an unconsolidated bed of silica sand was investigated and spatia...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...
Experiments at 8.0 MPa and 277.15 K were carried out in different porous media, such as silica sand ...
To gain in-depth understanding of natural gas hydrate behavior it is necessary to identify key param...
The hydrate formation behaviors are significantly affected by the grain size of the sediments. To mo...
The hydrate formation behaviors are significantly affected by the grain size of the sediments. To mo...
This thesis studies the formation and decomposition of methane hydrate crystal in an unconsolidated ...
The formation of methane hydrate in two significantly different media was investigated, using silica...
This thesis studies the formation and decomposition of methane hydrate crystal in an unconsolidated ...
Methane hydrate is a fascinating physical occurrence of methane and water in solid-state. Methane Hy...
Natural gas hydrates are solid crystalline compounds composed of water and gas molecules, located in...
The formation behaviors of methane hydrate in porous media with different particle and pore sizes we...
The formation of methane hydrate in an unconsolidated bed of silica sand was investigated and spatia...
A growing demand for energy and natural gas in particular, makes methane gas hydrates a potential ta...
The formation of methane hydrate in an unconsolidated bed of silica sand was investigated and spatia...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...
Experiments at 8.0 MPa and 277.15 K were carried out in different porous media, such as silica sand ...
To gain in-depth understanding of natural gas hydrate behavior it is necessary to identify key param...
The hydrate formation behaviors are significantly affected by the grain size of the sediments. To mo...
The hydrate formation behaviors are significantly affected by the grain size of the sediments. To mo...
This thesis studies the formation and decomposition of methane hydrate crystal in an unconsolidated ...
The formation of methane hydrate in two significantly different media was investigated, using silica...
This thesis studies the formation and decomposition of methane hydrate crystal in an unconsolidated ...
Methane hydrate is a fascinating physical occurrence of methane and water in solid-state. Methane Hy...
Natural gas hydrates are solid crystalline compounds composed of water and gas molecules, located in...
The formation behaviors of methane hydrate in porous media with different particle and pore sizes we...
The formation of methane hydrate in an unconsolidated bed of silica sand was investigated and spatia...
A growing demand for energy and natural gas in particular, makes methane gas hydrates a potential ta...
The formation of methane hydrate in an unconsolidated bed of silica sand was investigated and spatia...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...
Describing the pore habit of methane hydrate in sediment matrices is essential for understanding nat...