Carbon Capture Utilization and Storage technologies are essential mitigation options to reach net-zero CO2 emissions. However, this challenge requires the development of sustainable and economic separation technologies. This work presents a novel CO2 capture technology strategy based on non-dispersive CO2 absorption and membrane vacuum regeneration (MVR) technology, and employs two imidazolium ionic liquids (ILs), [emim][Ac] and [emim][MS], with different behavior to absorb CO2. Continuous absorption–desorption experiments were carried out using polypropylene hollow fiber membrane contactors. The results show the highest desorption behavior in the case of [emim][Ac], with a MVR performance efficiency of 92% at 313 K and vacuum pressure of 0...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Postcombustion processes based on membrane contactors and ionic liquids have emerged in recent years...
Slowing down climate change requires urgent measures, and consequently, one of the main challenges o...
In this work, the membrane vacuum regeneration (MVR) process was considered as a promising technolog...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
A membrane gas CO2 capture setup, based on the concept of single module absorption and single cycle ...
Post-combustion processes based on ionic liquids (ILs) and membrane contactors are attractive altern...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
Application of membrane contactors in a combination of monoethanolamine as a solvent system for post...
The present work demonstrates the potential of coupling ionic liquid 1-ethyl-3-methylimidazolium eth...
Novel technologies that decrease the level of CO2 in our atmosphere are crucial for minimizing the p...
International audienceHollow fiber membrane contactors with ionic liquids are promising alternatives...
Abstract: Global push towards green and clean energy technology has drawn considerable attention to ...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Postcombustion processes based on membrane contactors and ionic liquids have emerged in recent years...
Slowing down climate change requires urgent measures, and consequently, one of the main challenges o...
In this work, the membrane vacuum regeneration (MVR) process was considered as a promising technolog...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
A novel modelling and simulation framework on CO2 desorption process from post-combustion CO2 captur...
A membrane gas CO2 capture setup, based on the concept of single module absorption and single cycle ...
Post-combustion processes based on ionic liquids (ILs) and membrane contactors are attractive altern...
Carbon dioxide (CO<sub>2</sub>) capture using aqueous amine scrubbing is currently considered the mo...
Application of membrane contactors in a combination of monoethanolamine as a solvent system for post...
The present work demonstrates the potential of coupling ionic liquid 1-ethyl-3-methylimidazolium eth...
Novel technologies that decrease the level of CO2 in our atmosphere are crucial for minimizing the p...
International audienceHollow fiber membrane contactors with ionic liquids are promising alternatives...
Abstract: Global push towards green and clean energy technology has drawn considerable attention to ...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Global warming and climate change due to anthropogenic carbon dioxide (CO2) have aroused significant...
Postcombustion processes based on membrane contactors and ionic liquids have emerged in recent years...