In this study, three kinds of driving forces for the dissociation of CH4 hydrates were experimentally investigated to determine which was optimal for a consistent control of the depressurization process. A specially designed one-dimensional (1-D) reactor was used to examine the production behavior of CH4 from the hydrate-bearing sediment using depressurization at different temperatures. The saturation of CH4 hydrate based on the mass balance in the 1-D reactor was cross-checked with the saturation value obtained by powder X-ray diffraction. Under a constant pressure-based driving force (Delta P = 0.4 MPa), the dissociation rate of CH4 hydrate was slower at a higher temperature, whereas under a constant temperature-based driving force (Delta...
Based on currently available data from site measurements in the Shenhu Area of the South China Sea...
The kinetic behaviors of methane hydrate dissociation under depressurization in porous media are inv...
The Pilot-Scale Hydrate Simulator (PHS), a three-dimensional 117.8 L pressure vessel, was applied to...
Natural gas hydrate is considered as a promising energy resource in the future. How to choose a suit...
AbstractThe methane dissociation phenomena from hydrate-bearing sediment with different hydrate satu...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Methane hydrate is the world's largest hydrocarbon reservoir, and can be performed as an important "...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Gas hydrate is considered as a new promising energy resource, and it is extensively distributed in o...
Optimization of the depressurization pathways plays a crucial role in avoiding potential geohazards ...
The depressurization method is one of the most promising methods for the exploitation of hydrate res...
In this study, the different saturations of hydrate samples were formed in a cubic hydrate simulator...
Extensive deposits of naturally occurring gas hydrates have been found in many regions of the world....
In nature, gas hydrate is mainly distributed in permafrost region and deep ocean sediments. For thes...
Based on currently available data from site measurements in the Shenhu Area of the South China Sea...
The kinetic behaviors of methane hydrate dissociation under depressurization in porous media are inv...
The Pilot-Scale Hydrate Simulator (PHS), a three-dimensional 117.8 L pressure vessel, was applied to...
Natural gas hydrate is considered as a promising energy resource in the future. How to choose a suit...
AbstractThe methane dissociation phenomena from hydrate-bearing sediment with different hydrate satu...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Methane hydrate is the world's largest hydrocarbon reservoir, and can be performed as an important "...
This study presents the three-dimensional (3D) cubic hydrate simulator (CHS) to analyze the methane ...
Three high pressure reactors with different inner volumes, which are named as the Pilot-scale Hydrat...
Gas hydrate is considered as a new promising energy resource, and it is extensively distributed in o...
Optimization of the depressurization pathways plays a crucial role in avoiding potential geohazards ...
The depressurization method is one of the most promising methods for the exploitation of hydrate res...
In this study, the different saturations of hydrate samples were formed in a cubic hydrate simulator...
Extensive deposits of naturally occurring gas hydrates have been found in many regions of the world....
In nature, gas hydrate is mainly distributed in permafrost region and deep ocean sediments. For thes...
Based on currently available data from site measurements in the Shenhu Area of the South China Sea...
The kinetic behaviors of methane hydrate dissociation under depressurization in porous media are inv...
The Pilot-Scale Hydrate Simulator (PHS), a three-dimensional 117.8 L pressure vessel, was applied to...