A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors
Membrane fouling is the bottleneck restricting membrane bioreactors (MBRs) from being widely used for water reclamation. How to select the best membrane with anti-fouling properties for MBRs is always a complicated challenge due to the lack of evaluation methods. This paper introduced a facile metho...
Saved in:
Main Authors: | , , |
---|---|
Other Authors: | |
Format: | Article |
Language: | English |
Published: |
2022
|
Subjects: | |
Online Access: | https://hdl.handle.net/10356/159996 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Nanyang Technological University |
Language: | English |
id |
sg-ntu-dr.10356-159996 |
---|---|
record_format |
dspace |
spelling |
sg-ntu-dr.10356-1599962022-07-07T05:47:08Z A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors Li, Zhengtao Tio, Wee Sun, Darren Delai School of Civil and Environmental Engineering Engineering::Environmental engineering Waste-Water Treatment Interfacial Interactions Membrane fouling is the bottleneck restricting membrane bioreactors (MBRs) from being widely used for water reclamation. How to select the best membrane with anti-fouling properties for MBRs is always a complicated challenge due to the lack of evaluation methods. This paper introduced a facile method using traditional cake filtration and pore blocking theory for easy and fast selection of commercially available ultrafiltration (UF) membranes for MBRs. Three commercial UF membranes were selected for evaluating the filtration performance in MBRs using this method. The testing result reveals that the NS membrane has the best anti-fouling performance with less pore blocking, and its cake fouling was easier to remove, which was consistent with the long-term MBR operation result. FE-SEM, AFM and EDX were adopted to characterize the surface topography of the three UF membranes, which explained that the anti-fouling performance of the NS membrane was likely due to its less rough surface and Ti content. 2022-07-07T05:47:07Z 2022-07-07T05:47:07Z 2021 Journal Article Li, Z., Tio, W. & Sun, D. D. (2021). A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors. Environmental Science: Water Research & Technology, 7(11), 2054-2063. https://dx.doi.org/10.1039/D1EW00309G 2053-1400 https://hdl.handle.net/10356/159996 10.1039/D1EW00309G 11 7 2054 2063 en Environmental Science: Water Research & Technology © 2021 The Royal Society of Chemistry. All rights reserved. |
institution |
Nanyang Technological University |
building |
NTU Library |
continent |
Asia |
country |
Singapore Singapore |
content_provider |
NTU Library |
collection |
DR-NTU |
language |
English |
topic |
Engineering::Environmental engineering Waste-Water Treatment Interfacial Interactions |
spellingShingle |
Engineering::Environmental engineering Waste-Water Treatment Interfacial Interactions Li, Zhengtao Tio, Wee Sun, Darren Delai A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
description |
Membrane fouling is the bottleneck restricting membrane bioreactors (MBRs) from being widely used for water reclamation. How to select the best membrane with anti-fouling properties for MBRs is always a complicated challenge due to the lack of evaluation methods. This paper introduced a facile method using traditional cake filtration and pore blocking theory for easy and fast selection of commercially available ultrafiltration (UF) membranes for MBRs. Three commercial UF membranes were selected for evaluating the filtration performance in MBRs using this method. The testing result reveals that the NS membrane has the best anti-fouling performance with less pore blocking, and its cake fouling was easier to remove, which was consistent with the long-term MBR operation result. FE-SEM, AFM and EDX were adopted to characterize the surface topography of the three UF membranes, which explained that the anti-fouling performance of the NS membrane was likely due to its less rough surface and Ti content. |
author2 |
School of Civil and Environmental Engineering |
author_facet |
School of Civil and Environmental Engineering Li, Zhengtao Tio, Wee Sun, Darren Delai |
format |
Article |
author |
Li, Zhengtao Tio, Wee Sun, Darren Delai |
author_sort |
Li, Zhengtao |
title |
A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
title_short |
A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
title_full |
A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
title_fullStr |
A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
title_full_unstemmed |
A facile method for the fast and accurate selection of a UF membrane for membrane bioreactors |
title_sort |
facile method for the fast and accurate selection of a uf membrane for membrane bioreactors |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/159996 |
_version_ |
1738844931991011328 |