Low content nano-polyrhodanine modified polysulfone membranes with superior properties and their performance for wastewater treatment
Author:
Affiliation:
1. Department of Chemical Engineering
2. Babol Noushirvani University of Technology
3. Babol
4. Iran
5. Institute on Membrane Technology
6. ITM-CNR
7. I-87030 Rende
8. Italy
Abstract
In this study, PSf ultrafiltration membranes were modified with a low content of polyrhodanine (PRh) nanoparticles to improve the membrane performance for wastewater treatment.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Environmental Science,Materials Science (miscellaneous)
Link
http://pubs.rsc.org/en/content/articlepdf/2017/EN/C7EN00584A
Reference71 articles.
1. Treatment of dairy process waters by membrane operations for water reuse and milk constituents concentration
2. A step forward to a more efficient wastewater treatment by membrane surface modification via polymerizable bicontinuous microemulsion
3. J. C. Schrotter and B.Bozkaya-Schrotter, Membrane Technology: Membranes for Water Treatment, 2010, vol. 4, pp. 53–91
4. Effect of HNTs modification in nanocomposite membrane enhancement for bacterial removal by cross-flow ultrafiltration system
5. Novel low-fouling membrane bioreactor (MBR) for industrial wastewater treatment
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