Nano-sized silica/polysulfone (PSf) flat sheet asymmetric MMMs with high CO2 permeance for CO2/N2 separation were fabricated by dry/wet phase inversion method using N, N-dimethylacetamide (DMAc) and tetrahydrofuran (THF) as solvents and ethanol as additives. The results indicated that the addition of nano-silica on the polymer matrix resulted on reduced membrane performance due to void formation and particle agglomeration. Optimum membrane performance was obtained at the following fabrication parameters: 22 wt.% PSf, 31.8 wt.% DMAc, 31.8 wt.% THF, 14.4 wt.% ethanol, 20 s evaporation time, and 0 wt.% silica loading, with CO2/N2 selectivity of 15.6 and CO2 permeance of 14.2 GPU
This study was performed primarily to investigate the effect of activated carbon nanofiber (ACNF) on...
The aim of this study was the development of mixed matrix membranes (MMMs) based on silica MCM-41 di...
Mixed matrix membranes (MMMs) separation is a promising technology for gas permeation and separation...
Carbon dioxide (CO2) is the main contributor to greenhouse effect since industrial revolution. Mixed...
Utilizing nano-size filler into polymer matrix would overcome challenges in developing MMM by provid...
© 2015 Elsevier B.V. Mixed matrix membranes (MMMs) have a potential to improve the separation perfor...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
Since the polymeric membrane is not able to fulfill the requirements of industrial application, mixe...
Polysulfone-Silica mixed matrix hybrid membranes have been prepared by incorporating silicon dioxide...
PIM-1-based freestanding mixed matrix membranes (MMMs) and thin film nanocomposites (TFNs) were prep...
This research investigates the permeability of CO2 and N2 as well as selectivity of CO2 over N2 of p...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
The objective of this study is to develop a high performance and defect free asymmetric polysulfone ...
This study was performed primarily to investigate the effect of activated carbon nanofiber (ACNF) on...
The aim of this study was the development of mixed matrix membranes (MMMs) based on silica MCM-41 di...
Mixed matrix membranes (MMMs) separation is a promising technology for gas permeation and separation...
Carbon dioxide (CO2) is the main contributor to greenhouse effect since industrial revolution. Mixed...
Utilizing nano-size filler into polymer matrix would overcome challenges in developing MMM by provid...
© 2015 Elsevier B.V. Mixed matrix membranes (MMMs) have a potential to improve the separation perfor...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
This study investigated the use of nanosized fumed silica (Aerosil® R106) as fillers in the producti...
Since the polymeric membrane is not able to fulfill the requirements of industrial application, mixe...
Polysulfone-Silica mixed matrix hybrid membranes have been prepared by incorporating silicon dioxide...
PIM-1-based freestanding mixed matrix membranes (MMMs) and thin film nanocomposites (TFNs) were prep...
This research investigates the permeability of CO2 and N2 as well as selectivity of CO2 over N2 of p...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
The objective of this study is to develop a high performance and defect free asymmetric polysulfone ...
This study was performed primarily to investigate the effect of activated carbon nanofiber (ACNF) on...
The aim of this study was the development of mixed matrix membranes (MMMs) based on silica MCM-41 di...
Mixed matrix membranes (MMMs) separation is a promising technology for gas permeation and separation...