Fouling of reverse osmosis (RO) and nanofiltration (NF) membranes by humic acid, a recalcitrant natural organic matter (NOM), was systematically investigated. The membrane flux performance depended on both hydrodynamic conditions (flux and cross-flow velocity) and solution composition (humic acid concentration, pH, ionic strength, and calcium concentration), and was largely independent of virgin membrane properties. While increasing humic acid concentration and ionic strength, and lowering cross-flow velocity affected flux performance moderately, severe flux reduction occurred at high initial flux, low pH, and high calcium concentration. At a calcium concentration of 1 mM, all the membranes exhibited an identical stable flux, independent of...
This study investigated the fouling of pressure‐driven membranes (reverse osmosis, nanofiltration, a...
Fouling of polyamide membranes during reverse osmosis (RO) is a major challenge for adopting membran...
The performance of nanofiltration (NF) and reverse osmosis (RO) membranes can be significantly restr...
Fouling of reverse osmosis (RO) and nanofiltration (NF) membranes by humic acid, a recalcitrant natu...
The flux decline of reverse osmosis and nanofiltration membranes was investigated under constant pre...
The objectives of this research were to investigate the rejection efficiency of salt and hydrophobic...
The objectives of this research were to investigate the rejection efficiency of salt and hydrophobic...
Reverse osmosis and nanofiltration membranes fouled by humic acid were systematically characterized ...
Reverse osmosis and nanofiltration membranes fouled by humic acid were systematically characterized ...
The role of chemical and physical interactions in natural organic matter (NOM) fouling of nanofiltra...
A systematic investigation on the role of feed water recovery (or concentration factor) in colloidal...
Increasingly stringent regulations for drinking water quality have stimulated the application of ult...
A limiting flux model has been recently developed for predicting the fouling behavior of reverse osm...
Fouling of nanofiltration (NF) membrane by humic acid and natural organic matters (NOM) has been ext...
A limiting flux model has been recently developed for predicting the fouling behavior of reverse osm...
This study investigated the fouling of pressure‐driven membranes (reverse osmosis, nanofiltration, a...
Fouling of polyamide membranes during reverse osmosis (RO) is a major challenge for adopting membran...
The performance of nanofiltration (NF) and reverse osmosis (RO) membranes can be significantly restr...
Fouling of reverse osmosis (RO) and nanofiltration (NF) membranes by humic acid, a recalcitrant natu...
The flux decline of reverse osmosis and nanofiltration membranes was investigated under constant pre...
The objectives of this research were to investigate the rejection efficiency of salt and hydrophobic...
The objectives of this research were to investigate the rejection efficiency of salt and hydrophobic...
Reverse osmosis and nanofiltration membranes fouled by humic acid were systematically characterized ...
Reverse osmosis and nanofiltration membranes fouled by humic acid were systematically characterized ...
The role of chemical and physical interactions in natural organic matter (NOM) fouling of nanofiltra...
A systematic investigation on the role of feed water recovery (or concentration factor) in colloidal...
Increasingly stringent regulations for drinking water quality have stimulated the application of ult...
A limiting flux model has been recently developed for predicting the fouling behavior of reverse osm...
Fouling of nanofiltration (NF) membrane by humic acid and natural organic matters (NOM) has been ext...
A limiting flux model has been recently developed for predicting the fouling behavior of reverse osm...
This study investigated the fouling of pressure‐driven membranes (reverse osmosis, nanofiltration, a...
Fouling of polyamide membranes during reverse osmosis (RO) is a major challenge for adopting membran...
The performance of nanofiltration (NF) and reverse osmosis (RO) membranes can be significantly restr...