This study investigated the gas separation and transport properties of asymmetric mixed matrix membranes (MMM) fabricated from polyetherimide (PEI); Ultem 1000 incorporated with raw and modified halloysite nanotubes (HNT) as filler. The modified HNTs; S-HNTs were prepared by treating HNTs with N-ß-(aminoethyl)-?-aminopropyltrimethoxy silane (AEAPTMS). FESEM, XRD, FTIR, TGA, DSC and pure gas permeation testing were used to characterise the S-HNTs and the fabricated MMMs. In the first part of the experiments, the effect of dope preparation factors such as: ultrasonic sonication period, filler wetting period and priming period were investigated. In the second part, the influence of silane concentration on the fabricated MMMs was studied. Resul...
In this work, self-synthesized halloysite nanotube-hydrous ferric dioxide (HNT-HFO) nanocomposites p...
Amino modified multi-walled carbon nanotubes (MWNTs-NH2) were incorporated into poly(amide-6-b-ethyl...
Ultrafiltration (UF) polyethersulfone (PES) membranes were prepared by wet phase inversion method. C...
This study investigated the gas separation and transport properties of asymmetric mixed matrix membr...
This study investigated the facilitated transport effect of Ag+ ion exchanged halloysite nanotubes (...
This study investigated the expected morphologies for MMMs comprising large pore size fillers. Hallo...
Possessing the advantages of both polymeric membranes and the specific inorganic nanoparticles or na...
Gas separation by using membrane-based technology is one of the rising technologies used in the indu...
Mixing a polymer matrix and nanofiller to prepare a mixed matrix membrane (MMM) is an effective meth...
Mixed matrix membranes (MMMs) were fabricated from a 25 wt% of polysulfone (PSf) with halloysite nan...
In this study, mixed matrix membranes (MMMs) were prepared where activated carbon and halloysite nan...
Over the last few decades, significant improvements in the performance of polymeric membranes for ga...
The success of MMM is highly dependent on the relative hydrophobicity of the inorganic filler and o...
Mixed matrix membranes (MMM) combine useful molecular sieving properties of inorganic fillers with t...
Membrane filtration is an attractive process in water and wastewater treatment, but largely restrict...
In this work, self-synthesized halloysite nanotube-hydrous ferric dioxide (HNT-HFO) nanocomposites p...
Amino modified multi-walled carbon nanotubes (MWNTs-NH2) were incorporated into poly(amide-6-b-ethyl...
Ultrafiltration (UF) polyethersulfone (PES) membranes were prepared by wet phase inversion method. C...
This study investigated the gas separation and transport properties of asymmetric mixed matrix membr...
This study investigated the facilitated transport effect of Ag+ ion exchanged halloysite nanotubes (...
This study investigated the expected morphologies for MMMs comprising large pore size fillers. Hallo...
Possessing the advantages of both polymeric membranes and the specific inorganic nanoparticles or na...
Gas separation by using membrane-based technology is one of the rising technologies used in the indu...
Mixing a polymer matrix and nanofiller to prepare a mixed matrix membrane (MMM) is an effective meth...
Mixed matrix membranes (MMMs) were fabricated from a 25 wt% of polysulfone (PSf) with halloysite nan...
In this study, mixed matrix membranes (MMMs) were prepared where activated carbon and halloysite nan...
Over the last few decades, significant improvements in the performance of polymeric membranes for ga...
The success of MMM is highly dependent on the relative hydrophobicity of the inorganic filler and o...
Mixed matrix membranes (MMM) combine useful molecular sieving properties of inorganic fillers with t...
Membrane filtration is an attractive process in water and wastewater treatment, but largely restrict...
In this work, self-synthesized halloysite nanotube-hydrous ferric dioxide (HNT-HFO) nanocomposites p...
Amino modified multi-walled carbon nanotubes (MWNTs-NH2) were incorporated into poly(amide-6-b-ethyl...
Ultrafiltration (UF) polyethersulfone (PES) membranes were prepared by wet phase inversion method. C...