In this work, green silica-based ceramic hollow fiber membranes (CHFMs) derived from rice husk ash waste were successfully prepared via phase inversion and sintering technique. Prior to the fabrication, rice husk waste was converted into amorphous and crystalline silica-based rice husk ash (ARHA and CRHA). The surface of CHFMs could be easily modified to become hydrophobic by grafting with a fluoroalkylsilane (FAS) agent. The CHFMs were characterized before and after grafting using scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM), measurement of contact angle and liquid entry pressure of water (LEPw), and three-point bending test. The pore size and the porosity of the membrane surface...
Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ceramic p...
Superhydrophobic membranes have great potential towards various application, especially for thermal-...
Membrane distillation (MD) is an emerging desalination technology which separates vaporized solutes ...
A low-cost hydrophobic mullite hollow fibre membrane (Hy-MHFM) fabricated via phase inversion/sinter...
A low-cost hydrophobic mullite hollow fibre membrane (Hy-MHFM) fabricated via phase inversion/sinter...
In order to develop low cost ceramic membranes and effectively utilize abundantly and dumped waste a...
This study presents a facile approach to produce hydrophobic ceramic hollow fiber membranes (CHFMs) ...
Low-cost green ceramic hollow fiber membranes (CHFM) were successfully designed and fabricated from ...
According to the World Health Organization (WHO), water shortage affects more than 66% of the world ...
Hollow fibre ceramic membranes are well-known to have unique characteristics, including superior the...
This work describes the preparation of green ceramic hollow fiber membranes derived from waste sugar...
This work describes the preparation of green ceramic hollow fiber membranes derived from waste sugar...
Abstract Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ...
A new inorganic hydrophobic porous membrane was prepared and applied in desalination with the air-ga...
Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ceramic p...
Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ceramic p...
Superhydrophobic membranes have great potential towards various application, especially for thermal-...
Membrane distillation (MD) is an emerging desalination technology which separates vaporized solutes ...
A low-cost hydrophobic mullite hollow fibre membrane (Hy-MHFM) fabricated via phase inversion/sinter...
A low-cost hydrophobic mullite hollow fibre membrane (Hy-MHFM) fabricated via phase inversion/sinter...
In order to develop low cost ceramic membranes and effectively utilize abundantly and dumped waste a...
This study presents a facile approach to produce hydrophobic ceramic hollow fiber membranes (CHFMs) ...
Low-cost green ceramic hollow fiber membranes (CHFM) were successfully designed and fabricated from ...
According to the World Health Organization (WHO), water shortage affects more than 66% of the world ...
Hollow fibre ceramic membranes are well-known to have unique characteristics, including superior the...
This work describes the preparation of green ceramic hollow fiber membranes derived from waste sugar...
This work describes the preparation of green ceramic hollow fiber membranes derived from waste sugar...
Abstract Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ...
A new inorganic hydrophobic porous membrane was prepared and applied in desalination with the air-ga...
Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ceramic p...
Affordable hydrophobic hollow fibre membranes were prepared using kaolin and alumina based ceramic p...
Superhydrophobic membranes have great potential towards various application, especially for thermal-...
Membrane distillation (MD) is an emerging desalination technology which separates vaporized solutes ...