Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process of natural gas. CO2 gas separation technology using membrane contactor has been developed, however solvent regeneration using membrane contactors are still rare because it requires a larger energy. The regeneration process by using membrane vacuum technology was put forward to reduce the regeneration energy consumption. In this work, arginine, piperazine (PZ), and potassium carbonate (K2CO3) as activators were added into diethanolamine (DEA) solution to form aqueous solutions of activated DEA. The experiment of CO2 desorption from activated DEA was carried out in hollow fibre membrane contactor (HFMC). The solvent with rich CO2 at 30-70°C wa...
Greenhouse gases such as carbon dioxide have been known to contribute significantly to global warmin...
AbstractA membrane contactor based desorption process was developed to strip carbon dioxide (CO2) fr...
Although extensive research attention has been drawn to using membranes for carbon dioxide (CO2) cap...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
Membrane-based desorption of carbon dioxide (CO2) using a membrane contactor is considered a novel p...
AbstractThe novel regeneration process by using membrane vacuum technology was put forward to reduce...
AbstractMembrane vacuum regeneration (MVR) technology is a novel method to regenerate CO2 rich solve...
Natural gas consists primarily of methane (CH4) but it also contains considerable amounts of contami...
Membrane gas–liquid contactors have been developed to reduce the capital cost and energy consumption...
AbstractAmine scrubbing has been considered to be the most feasible route for CO2 capture. However, ...
The feasibility of removing high concentration CO2 from natural gas using membrane contactors at ele...
In this work, the membrane vacuum regeneration (MVR) process was considered as a promising technolog...
Membrane gas-solvent contactors are a hybrid technology of solvent absorption with membrane separati...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
Greenhouse gases such as carbon dioxide have been known to contribute significantly to global warmin...
AbstractA membrane contactor based desorption process was developed to strip carbon dioxide (CO2) fr...
Although extensive research attention has been drawn to using membranes for carbon dioxide (CO2) cap...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
Membrane-based desorption of carbon dioxide (CO2) using a membrane contactor is considered a novel p...
AbstractThe novel regeneration process by using membrane vacuum technology was put forward to reduce...
AbstractMembrane vacuum regeneration (MVR) technology is a novel method to regenerate CO2 rich solve...
Natural gas consists primarily of methane (CH4) but it also contains considerable amounts of contami...
Membrane gas–liquid contactors have been developed to reduce the capital cost and energy consumption...
AbstractAmine scrubbing has been considered to be the most feasible route for CO2 capture. However, ...
The feasibility of removing high concentration CO2 from natural gas using membrane contactors at ele...
In this work, the membrane vacuum regeneration (MVR) process was considered as a promising technolog...
Membrane gas-solvent contactors are a hybrid technology of solvent absorption with membrane separati...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
Greenhouse gases such as carbon dioxide have been known to contribute significantly to global warmin...
AbstractA membrane contactor based desorption process was developed to strip carbon dioxide (CO2) fr...
Although extensive research attention has been drawn to using membranes for carbon dioxide (CO2) cap...