Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the rejection of steroid hormone estrone by reverse osmosis (RO) and nanofiltration (NF) membranes. In this study, the effects of solution chemistry (solution pH and ionic strength) on the estrone rejection by NF membrane with the presence of HpoA were systematically investigated. Crossflow nanofiltration experiments show that the presence of HpoA significantly improved estrone rejection at all pH and ionic strength levels investigated. It is consistently shown that the “enhancement effect” of HpoA on estrone rejection at neutral and alkaline pH is attributed to the binding of estrone by HpoA macromolecules via hydrogen bonding between phenolic ...
Nanofiltration (NF) can be used in water and wastewater treatment as well as water recycling applica...
This paper investigates the separation process of two estrogenic hormones, estrone and estradiol, us...
Micropollutants occur in natural waters from a range of sources. Estrogenic compounds are naturally ...
Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the...
The objective of this study was to investigate the rejection of steroid hormone estrone by NF membra...
The influence of different dissolved organic matter (DOM) on the removal of steroid hormone estrone ...
The ability of a variety of nanofiltration and reverse osmosis membranes to retain the natural horm...
The ability of a variety of nanofiltration and reverse osmosis membranes to retain the natural hormo...
The influence of solute–solute interactions on hormone retention during nanofiltration (NF) was quan...
The impact of solute–solute interactions on retention and membrane adsorption of the micropollutant ...
This paper investigates the separation process of two estrogenic hormones, estrone and estradiol, u...
Despite of their low concentration, the impact of steroid estrogens such as estrone, 17 α-estradiol,...
Protein (Muramidase) fouling and its effects on rejection of Estrone (E1) by two nanofiltration memb...
Results of studies reported here show that adsorption could result in considerable accumulation of ...
Endocrine disrupter; estrone; hormone; adsorption; nanofiltration (NF); reverse osmosis (RO); natura...
Nanofiltration (NF) can be used in water and wastewater treatment as well as water recycling applica...
This paper investigates the separation process of two estrogenic hormones, estrone and estradiol, us...
Micropollutants occur in natural waters from a range of sources. Estrogenic compounds are naturally ...
Hydrophobic acid organic matter (HpoA) extracted from treated effluent has been known to improve the...
The objective of this study was to investigate the rejection of steroid hormone estrone by NF membra...
The influence of different dissolved organic matter (DOM) on the removal of steroid hormone estrone ...
The ability of a variety of nanofiltration and reverse osmosis membranes to retain the natural horm...
The ability of a variety of nanofiltration and reverse osmosis membranes to retain the natural hormo...
The influence of solute–solute interactions on hormone retention during nanofiltration (NF) was quan...
The impact of solute–solute interactions on retention and membrane adsorption of the micropollutant ...
This paper investigates the separation process of two estrogenic hormones, estrone and estradiol, u...
Despite of their low concentration, the impact of steroid estrogens such as estrone, 17 α-estradiol,...
Protein (Muramidase) fouling and its effects on rejection of Estrone (E1) by two nanofiltration memb...
Results of studies reported here show that adsorption could result in considerable accumulation of ...
Endocrine disrupter; estrone; hormone; adsorption; nanofiltration (NF); reverse osmosis (RO); natura...
Nanofiltration (NF) can be used in water and wastewater treatment as well as water recycling applica...
This paper investigates the separation process of two estrogenic hormones, estrone and estradiol, us...
Micropollutants occur in natural waters from a range of sources. Estrogenic compounds are naturally ...