Removal of endocrine disrupting compounds and pharmaceuticals by nanofiltration and ultrafiltration membranes

Desalination 202 (2006) 16-23

Authors

Abstract

With the recent emergence of endocrine disrupting compounds, pharmaceuticals, and personal care products (EDC/PPCPs) as an important potable drinking water and reclaimed wastewater quality issue, our study has investigated the removal of EDC/PPCPs of 27 compounds by nanofiltration (NF) and ultrafiltration (UF) membranes from various drinking water sources using a dead-end stirred-cell filtration system. Experiments were performed at environmentally relevant initial EDC/PPCP concentrations ranging typically from 2 to <150 ng/L. EDC/PPCP retention was quantified by liquid chromatography with mass spectroscopy-mass spectroscopy. We have observed a general separation trend due to hydrophobic adsorption as a function of octanol–water partition coefficient between the hydrophobic compounds and porous hydrophobic membrane during the membrane filtration. The results have showed that both hydrophobic adsorption and size exclusion mechanisms are dominant to retain EDC/PPCP for the NF membrane, while the UF membrane retained typically hydrophobic EDC/PPCPs due mainly to hydrophobic adsorption.

Conclusion

In this work, NF and UF dead-end stirred-cell measurements were performed to determine removal of endocrine disrupting compounds, pharmaceuticals and personal care products (EDC/PPCPs) from one model water and three surface waters. More polar, less volatile, and less hydrophobic compounds had relatively low retention, which indicates that retention by NF and UF is clearly governed by hydrophobic adsorption. However, once steady-state operation

Tags

Endocrine disrupting compounds, Hormones, Nanofiltration, Ultrafiltration, Water treatment


Source: http://www.desline.com/articoli/8378.pdf