Membrane separation is gaining great attention in many applications, especially in gas separation. Polysulfone (PSF) is the most widely studied polymeric membrane material for CO2 in its pure or modified state. Ionic liquids supported membrane technology (SILMs) are now widely applied due to their unique properties at room temperatures. In our previous study, we proved the enhanced ability of ionic liquid enhanced PSF for the separation of CO2 from gas streams. In this study, the dielectric measurements (BDS) extending up to 107 Hz for different concentrations of ionic liquid into PSF matrix, are presented. Thermogravimetric analysis measurement (TGA), differential scanning calorimeter (DSC), dynamic mechanical analysis, and the tensile pro...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...
Some 1-alkyl-3-methylimidazolium-based ionic liquids were synthesized, characterized, and immobilize...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...
This paper indicates the possibility of application of imidazolium ionic liquids immobilized in poly...
This work explores ionic liquid-based membranes with siloxane functionalized cations using two diffe...
© 2016 Elsevier B.V. A surprisingly simple, yet effective blending method for ionic liquids (ILs) an...
Polymer based membranes are one of the low-cost technologies available for the gas separation. Three...
Polysulfone membrane is one of the potential candidates to be used as membranes for gas separation. ...
It is of great interest to determine whether a relatively easily prepared and inexpensive protic ion...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
This thesis studies composite ionic liquid and polymer membranes (CILPMs} for gas separation and rea...
The separation of carbon dioxide (CO2) is of great importance for environment protection and gas res...
Separation technology using polymeric membrane has been one of the potential strategies to effective...
AbstractThis paper presented the findings of polyethersulfone / [EMIM][Tf2N] blending on morphology ...
Nafion composite membranes for CO2 separation with good CO2/CH4 separation factors were developed us...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...
Some 1-alkyl-3-methylimidazolium-based ionic liquids were synthesized, characterized, and immobilize...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...
This paper indicates the possibility of application of imidazolium ionic liquids immobilized in poly...
This work explores ionic liquid-based membranes with siloxane functionalized cations using two diffe...
© 2016 Elsevier B.V. A surprisingly simple, yet effective blending method for ionic liquids (ILs) an...
Polymer based membranes are one of the low-cost technologies available for the gas separation. Three...
Polysulfone membrane is one of the potential candidates to be used as membranes for gas separation. ...
It is of great interest to determine whether a relatively easily prepared and inexpensive protic ion...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
This thesis studies composite ionic liquid and polymer membranes (CILPMs} for gas separation and rea...
The separation of carbon dioxide (CO2) is of great importance for environment protection and gas res...
Separation technology using polymeric membrane has been one of the potential strategies to effective...
AbstractThis paper presented the findings of polyethersulfone / [EMIM][Tf2N] blending on morphology ...
Nafion composite membranes for CO2 separation with good CO2/CH4 separation factors were developed us...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...
Some 1-alkyl-3-methylimidazolium-based ionic liquids were synthesized, characterized, and immobilize...
It is imperative to develop efficient, reversible and economic technologies for separating CO2 which...