In this work, hydrophilic hydrous manganese dioxide (HMO) nanoparticles were synthesized and used as the inorganic filler for the preparation of mixed matrix membranes (MMMs). The aim of adding HMO nanoparticles into the polyethersulfone (PES) membrane matrix is to improve membrane hydrophilicity and anti-fouling resistance against oil deposition and/or adsorption. The resulting membranes were characterized by SEM, AFM, FTIR, contact angle measurements and ultrafiltration (UF) of synthetic oily wastewater. Experimental results showed that the hydrophilicity of the PES/HMO membrane was significantly improved to a low value of contact angle (16.4) by HMO loading, which as a consequence led to a promising pure water permeability (573.2 L m À2 ...
Oil-intensive industries produce environmentally problematic wastewaters and their treatment is more...
The scarcity of freshwater resources in many regions of the world has contributed to the emergence o...
Membranes have been known widely to treat emulsified water. New membrane technology has been fabrica...
The recent growth of oil and gas industry has led to the increase of oily wastewater release. Membra...
The rapid growth in oil and gas industry has led to the large production of oily wastewater. The mas...
In this work, ultrafiltration (UF) mixed matrix membranes (MMMs) incorporated with hydrophilic hydro...
In this research, hydrous manganese oxide (HMO) nanoparticles was adopted in polyvinylidene fluoride...
Mixed matrix membrane (MMM) composed of organic and inorganic materials has been widely studied for ...
In this work, a new type of mixed matrix membranes (MMMs) composed of dual-nanofillers at different ...
Abstract The treatment of oily wastewater continues to pose a challenge in industries...
Oily wastewater has been recognized as one of the most concerned environmental pollutions that come ...
In oily wastewater treatment using membrane technology, surface fouling is the major issue that coul...
In this research, polyvinylidene fluoride (PVDF) polymer was mixed with hydrous manganese oxide (HMO...
In this work, self-synthesized halloysite nanotube-hydrous ferric dioxide (HNT-HFO) nanocomposites p...
Organic-inorganic composite membranes were synthesized through phase inversion technique with nano-s...
Oil-intensive industries produce environmentally problematic wastewaters and their treatment is more...
The scarcity of freshwater resources in many regions of the world has contributed to the emergence o...
Membranes have been known widely to treat emulsified water. New membrane technology has been fabrica...
The recent growth of oil and gas industry has led to the increase of oily wastewater release. Membra...
The rapid growth in oil and gas industry has led to the large production of oily wastewater. The mas...
In this work, ultrafiltration (UF) mixed matrix membranes (MMMs) incorporated with hydrophilic hydro...
In this research, hydrous manganese oxide (HMO) nanoparticles was adopted in polyvinylidene fluoride...
Mixed matrix membrane (MMM) composed of organic and inorganic materials has been widely studied for ...
In this work, a new type of mixed matrix membranes (MMMs) composed of dual-nanofillers at different ...
Abstract The treatment of oily wastewater continues to pose a challenge in industries...
Oily wastewater has been recognized as one of the most concerned environmental pollutions that come ...
In oily wastewater treatment using membrane technology, surface fouling is the major issue that coul...
In this research, polyvinylidene fluoride (PVDF) polymer was mixed with hydrous manganese oxide (HMO...
In this work, self-synthesized halloysite nanotube-hydrous ferric dioxide (HNT-HFO) nanocomposites p...
Organic-inorganic composite membranes were synthesized through phase inversion technique with nano-s...
Oil-intensive industries produce environmentally problematic wastewaters and their treatment is more...
The scarcity of freshwater resources in many regions of the world has contributed to the emergence o...
Membranes have been known widely to treat emulsified water. New membrane technology has been fabrica...