Osmotically driven membrane processes have the potential to treat impaired water sources, desalinate sea/brackish waters, and sustainably produce energy. The development of a membrane tailored for these processes is essential to advance the technology to the point that it is commercially viable. Here, a systematic investigation of the influence of thin-film composite membrane support layer structure on forward osmosis performance is conducted. The membranes consist of a selective polyamide active layer formed by interfacial polymerization on top of a polysulfone support layer fabricated by phase separation. By systematically varying the conditions used during the casting of the polysulfone layer, an array of support layers with differing st...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) membranes have gained increasingly attention due to their potential advantages ...
Osmotically driven membrane processes have the potential to treat impaired water sources, desalinate...
Osmotically driven membrane processes have the potential to treat impaired water sources, desalinate...
Recent studies show that osmotically driven membrane processes may be a viable technology for desali...
Recent studies show that osmotically driven membrane processes may be a viable technology for desali...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
Water scarcity, water-stress, and drought are becoming common terms to describe the world we live in...
Water scarcity, water-stress, and drought are becoming common terms to describe the world we live in...
Pressure retarded osmosis has the potential to produce renewable energy from natural salinity gradie...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) membranes have gained increasingly attention due to their potential advantages ...
Osmotically driven membrane processes have the potential to treat impaired water sources, desalinate...
Osmotically driven membrane processes have the potential to treat impaired water sources, desalinate...
Recent studies show that osmotically driven membrane processes may be a viable technology for desali...
Recent studies show that osmotically driven membrane processes may be a viable technology for desali...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
Water scarcity, water-stress, and drought are becoming common terms to describe the world we live in...
Water scarcity, water-stress, and drought are becoming common terms to describe the world we live in...
Pressure retarded osmosis has the potential to produce renewable energy from natural salinity gradie...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
This study describes the fabrication of sulfonated polyethersulfone (SPES) as a super-hydrophilic su...
Forward osmosis (FO) membranes have gained increasingly attention due to their potential advantages ...