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Impacts of NF concentrate recirculation on membrane performance in an integrated MBR and NF membrane process for wastewater treatment

Authors :
Antoine Kemperman
Hardy Temmink
DC Kitty Nijmeijer
H.H.M. Rijnaarts
A. Zwijnenburg
C Kappel
Membrane Materials and Processes
Membrane Science & Technology
Faculty of Science and Technology
Source :
Journal of Membrane Science, 453. Elsevier, Journal of Membrane Science, 453, 359-368, Journal of Membrane Science 453 (2014), Journal of membrane science, 453, 359-368. Elsevier
Publication Year :
2014

Abstract

As water shortages are increasing, the need for sustainable water treatment and the reuse of water is essential. Water reuse from wastewater can be accomplished in a membrane bioreactor (MBR) in the secondary activated sludge stage of a wastewater treatment plant. To remove viruses, dissolved organics and inorganics still present in the MBR permeate, nanofiltration (NF) can be applied. Nevertheless, the major drawback of nanofiltration membranes is the production of a concentrate stream that cannot be discharged to the environment. In this research we investigate the concept of a combined MBR and NF system with NF concentrate recirculation back to the MBR to produce reusable water in a sustainable way. Long-term continuous operation (1 year) shows that the NF permeate quality is riot impacted by the recirculation. Fouling on the NF membrane is mostly the result of inorganics, while organics (e.g. humic acids) do not have a major impact on NF fouling. In fact, the flux of the NF was enhanced by the presence of humic acids due to recirculation. However, the MBR showed increased fouling and consequently more frequent membrane cleaning. The results presented show that the continuous production of reusable water from wastewater in a combined MBR and NO process with NO concentrate recirculation can be successful. (C) 2013 Elsevier B.V. All rights reserved

Details

Language :
English
ISSN :
03767388
Volume :
453
Database :
OpenAIRE
Journal :
Journal of Membrane Science
Accession number :
edsair.doi.dedup.....2f1f424ff1916f6b825a87e6cc7db302
Full Text :
https://doi.org/10.1016/j.memsci.2013.11.023