AbstractMembrane vacuum regeneration (MVR) technology is a novel method to regenerate CO2 rich solvent at low temperature (around 348K) for CO2 chemical absorption process. In this study, MVR behaviors for 15 different amine-based absorbents were investigated to discuss the relationships between absorbent chemical structures and vacuum regeneration behavior by screening experiments. The results show that more hydroxyl group, shorter carbon chain length bonded at the active nitrogen atom and the existence of methyl group could elevate the CO2 stripping rate; for polyamines, average CO2 stripping rate increases with amine group number from 2 to 4 but then falls as amine group number further increases to 5; hydroxyl group substitution on carbo...
AbstractIn the framework of the COCS (Cost Saving CO2 Capture System) project we continue to develop...
Membrane-based desorption of carbon dioxide (CO2) using a membrane contactor is considered a novel p...
AbstractToshiba has developed amine based aqueous solution (Toshiba solvent 1, TS-1) that can signif...
AbstractMembrane vacuum regeneration (MVR) technology is a novel method to regenerate CO2 rich solve...
AbstractIn the present paper we investigated seven synthetic and eleven commercial amine based absor...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
A study to determine the relationships between structure and activity of various amine-based CO2 sol...
Resulting of fossil fuel usage, CO2 concentration in the atmosphere has increased drastically throug...
Chemical absorption using amine-based solvents have proven to be the most studied, as well as the mo...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
AbstractThe novel regeneration process by using membrane vacuum technology was put forward to reduce...
In this present research, promising aqueous amine tri-solvent blends for carbon dioxide (CO2) captur...
AbstractIn the present paper, we investigated five synthetic amine based absorbents, including three...
AbstractIn the framework of the COCS (Cost Saving CO2 Capture System) project we continue to develop...
Membrane-based desorption of carbon dioxide (CO2) using a membrane contactor is considered a novel p...
AbstractToshiba has developed amine based aqueous solution (Toshiba solvent 1, TS-1) that can signif...
AbstractMembrane vacuum regeneration (MVR) technology is a novel method to regenerate CO2 rich solve...
AbstractIn the present paper we investigated seven synthetic and eleven commercial amine based absor...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
A study to determine the relationships between structure and activity of various amine-based CO2 sol...
Resulting of fossil fuel usage, CO2 concentration in the atmosphere has increased drastically throug...
Chemical absorption using amine-based solvents have proven to be the most studied, as well as the mo...
Carbondioxide (CO2) content in natural gas must be removed because it inhibits liquefication process...
AbstractThe novel regeneration process by using membrane vacuum technology was put forward to reduce...
In this present research, promising aqueous amine tri-solvent blends for carbon dioxide (CO2) captur...
AbstractIn the present paper, we investigated five synthetic amine based absorbents, including three...
AbstractIn the framework of the COCS (Cost Saving CO2 Capture System) project we continue to develop...
Membrane-based desorption of carbon dioxide (CO2) using a membrane contactor is considered a novel p...
AbstractToshiba has developed amine based aqueous solution (Toshiba solvent 1, TS-1) that can signif...