Technology of hydrate-based CO2 separation and capture is considered as a green and economical gas separation technology and is extensively studied. Most of the previous studies involving the aspects of thermodynamics and kinetics of the CO2 gas hydrate formation were carried out with small reactors, whereas few studies were carried out with pilot-scale equipments. In this paper, a pilot-scale CO2 separation from flue gas by the hydrate method is reported. By the equipment, we successfully realize CO2 separation from flue gas. By a two-stage hydrate separation process, the CO2 concentration can be enhanced to approximately 90.0% from 17.0%. The effects of the operating pressure and gas flow rate on CO2 recovery are also investigated by comp...
This project is a trial conducted under contract with CO2CRC, Australia of a new CO2 capture technol...
Carbon dioxide (CO2) capture has been a significant topic of research and development activities ove...
The hydrate-based carbon dioxide (CO2) capture from the integrated gasification combined cycle (IG...
Hydrate-based carbon dioxide (CO2) separation from gas mixture has been extensively investigated for...
Hydrate-based CO2 separation and capture from gas mixtures containing CO2 has gained growing attenti...
The independent researched and developed gas separation installation by hydrate method was used to s...
This thesis examines the prospect of employing hydrate crystallization in a gas/liquid stirred vesse...
The “Integrated Coal Gasification Combined Cycle” (IGCC) represents an advanced approach for green f...
The equilibrium hydrate formation conditions for CO2/H2 gas mixtures with different CO2 concentratio...
One of the new approaches for capturing carbon dioxide from treated flue gas (post-combustion captur...
To simulate the process of hydrate-based gas separation for post-combustion CO2 capture in non-equil...
In this work, the effects of stirring and bubbling methods on hydrate-based carbon dioxide (CO2) s...
Thermodynamic measurements were performed to show that it is possible to recover CO2 from fuel gas (...
This chapter is concerned with CO2 separation from CO2 + CH4 mixtures by means of gas hydrates. It d...
Hydrate-based CO2 capture is a promising technology. To obtain fundamental data for a flowing system...
This project is a trial conducted under contract with CO2CRC, Australia of a new CO2 capture technol...
Carbon dioxide (CO2) capture has been a significant topic of research and development activities ove...
The hydrate-based carbon dioxide (CO2) capture from the integrated gasification combined cycle (IG...
Hydrate-based carbon dioxide (CO2) separation from gas mixture has been extensively investigated for...
Hydrate-based CO2 separation and capture from gas mixtures containing CO2 has gained growing attenti...
The independent researched and developed gas separation installation by hydrate method was used to s...
This thesis examines the prospect of employing hydrate crystallization in a gas/liquid stirred vesse...
The “Integrated Coal Gasification Combined Cycle” (IGCC) represents an advanced approach for green f...
The equilibrium hydrate formation conditions for CO2/H2 gas mixtures with different CO2 concentratio...
One of the new approaches for capturing carbon dioxide from treated flue gas (post-combustion captur...
To simulate the process of hydrate-based gas separation for post-combustion CO2 capture in non-equil...
In this work, the effects of stirring and bubbling methods on hydrate-based carbon dioxide (CO2) s...
Thermodynamic measurements were performed to show that it is possible to recover CO2 from fuel gas (...
This chapter is concerned with CO2 separation from CO2 + CH4 mixtures by means of gas hydrates. It d...
Hydrate-based CO2 capture is a promising technology. To obtain fundamental data for a flowing system...
This project is a trial conducted under contract with CO2CRC, Australia of a new CO2 capture technol...
Carbon dioxide (CO2) capture has been a significant topic of research and development activities ove...
The hydrate-based carbon dioxide (CO2) capture from the integrated gasification combined cycle (IG...