Internal concentration polarization (ICP) in forward osmosis (FO) process is a characteristic problem for asymmetric thin-film composite (TFC) FO membrane which leads to lower water flux. To mitigate the ICP effect, modification of the substrates? properties has been one of the most effective methods. A new polyethersulfone-based ultrafiltration membrane with increased surface porosity and high water flux was recently produced by incorporating Zn2GeO4 nanowires. The composite membrane was used as a substrate for the fabrication of TFC FO membrane, by coating a thin layer of polyamide on top of the substrate. The substrate and the nanowires were characterized by a range of techniques such as SEM, XRD, and contact angle goniometry. The water ...
Support layer of thin film composite (TFC) membrane plays an important role in forward osmosis (FO) ...
Forward osmosis (FO) process has been gaining popularity in recent years as a potential alternative ...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...
Internal concentration polarization (ICP) in forward osmosis (FO) process is a characteristic proble...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
One of the limiting factors in good performance of forward osmosis (FO) membranes is the internal co...
© 2016 Elsevier Ltd A novel thin-film composite (TFC) forward osmosis (FO) membrane with dual-layere...
Realizing that one of the most important challenges in the forward osmosis (FO) membrane is internal...
The Forward Osmosis (FO) membrane was the core of FO technology. Obtaining a high water flux while m...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
A major limiting factor of forward osmosis (FO) membrane, particularly in pressure retarded osmosis ...
Forward osmosis (FO) is a membrane process that occurs when solutions of different osmotic pressures...
Forward osmosis (FO) is a novel osmotic-driven membrane process with lower energy consumption and ma...
Hypothesis: Despite the wide application of nanofiltration (NF) membranes in forward osmosis (FO) pr...
Recently, forward osmosis (FO) has attracted a great deal of attention in desalination and wastewate...
Support layer of thin film composite (TFC) membrane plays an important role in forward osmosis (FO) ...
Forward osmosis (FO) process has been gaining popularity in recent years as a potential alternative ...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...
Internal concentration polarization (ICP) in forward osmosis (FO) process is a characteristic proble...
Forward Osmosis (FO) technology is becoming popular due to its potential applications in many import...
One of the limiting factors in good performance of forward osmosis (FO) membranes is the internal co...
© 2016 Elsevier Ltd A novel thin-film composite (TFC) forward osmosis (FO) membrane with dual-layere...
Realizing that one of the most important challenges in the forward osmosis (FO) membrane is internal...
The Forward Osmosis (FO) membrane was the core of FO technology. Obtaining a high water flux while m...
Forward osmosis (FO) is an emerging membrane separation technology. It is different from the well-st...
A major limiting factor of forward osmosis (FO) membrane, particularly in pressure retarded osmosis ...
Forward osmosis (FO) is a membrane process that occurs when solutions of different osmotic pressures...
Forward osmosis (FO) is a novel osmotic-driven membrane process with lower energy consumption and ma...
Hypothesis: Despite the wide application of nanofiltration (NF) membranes in forward osmosis (FO) pr...
Recently, forward osmosis (FO) has attracted a great deal of attention in desalination and wastewate...
Support layer of thin film composite (TFC) membrane plays an important role in forward osmosis (FO) ...
Forward osmosis (FO) process has been gaining popularity in recent years as a potential alternative ...
Forward osmosis (FO) has received intensive studies recently for a range of potential applications s...