Fixed-bed thermodynamic CO2 adsorption tests were performed in model flue-gas onto Filtrasorb 400 and Nuchar RGC30 activated carbons (AC) functionalized with [Hmim][BF4] and [Emim][Gly] ionic liquids (IL). A comparative analysis of the CO2 capture results and N2 porosity characterization data evidenced that the use of [Hmim][BF4], a physical solvent for carbon dioxide, ended up into a worsening of the parent AC capture performance, due to a dominating pore blocking effect at all the operating temperatures. Conversely, the less sterically-hindered and amino acid-based [Emim][Gly] IL was effective in increasing the AC capture capacity at 353K under milder impregnation conditions, the beneficial effect being attributed to both its chemical aff...
As an emerging carbon dioxide (CO2) capture technology, separating CO2 from industrial gases with io...
Recently, the use of ionic liquids (ILs) for carbon capture and separation processes has gained grea...
Development of novel technologies for the efficient and reversible capture of CO2 is highly desired....
Fixed-bed thermodynamic CO2 adsorption tests were performed in model flue-gas onto Filtrasorb 400 an...
The increasing level of atmospheric CO2 has driven research efforts to the development of high-perfo...
As long as the use of fossil fuels plays a crucial role in worldwide energy production, CO2 capture ...
The development of high-efficiency and cost-effective purification processes for CO2 capture from fl...
The development of high-efficiency and cost-effective purification processes for the removal of CO2 ...
The development of high-performance depuration processes for CO2 removal from flue-gases deriving fr...
The adoption of ionic liquids (IL) for the selective removal of CO2 from industrial flue-gases repre...
In this paper, we report on CO2 capture results under model flue-gas conditions for a commercial γ-A...
The enormous emission of carbon dioxide (CO2) from industries has triggered a series of environmenta...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
In this paper, mesoporous γ-Al2O3 was impregnated with [Emim][Gly] ionic liquid (IL) at different lo...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
As an emerging carbon dioxide (CO2) capture technology, separating CO2 from industrial gases with io...
Recently, the use of ionic liquids (ILs) for carbon capture and separation processes has gained grea...
Development of novel technologies for the efficient and reversible capture of CO2 is highly desired....
Fixed-bed thermodynamic CO2 adsorption tests were performed in model flue-gas onto Filtrasorb 400 an...
The increasing level of atmospheric CO2 has driven research efforts to the development of high-perfo...
As long as the use of fossil fuels plays a crucial role in worldwide energy production, CO2 capture ...
The development of high-efficiency and cost-effective purification processes for CO2 capture from fl...
The development of high-efficiency and cost-effective purification processes for the removal of CO2 ...
The development of high-performance depuration processes for CO2 removal from flue-gases deriving fr...
The adoption of ionic liquids (IL) for the selective removal of CO2 from industrial flue-gases repre...
In this paper, we report on CO2 capture results under model flue-gas conditions for a commercial γ-A...
The enormous emission of carbon dioxide (CO2) from industries has triggered a series of environmenta...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
In this paper, mesoporous γ-Al2O3 was impregnated with [Emim][Gly] ionic liquid (IL) at different lo...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
As an emerging carbon dioxide (CO2) capture technology, separating CO2 from industrial gases with io...
Recently, the use of ionic liquids (ILs) for carbon capture and separation processes has gained grea...
Development of novel technologies for the efficient and reversible capture of CO2 is highly desired....