Vibration of membrane modules for low pressure membrane process

The most common fouling mitigation method used in submerged membrane bioreactor (SMBR) is through the use of aeration technology which involves providing bubbles in the SMBR system that will have a shearing efTect on the surface of the membrane. This mitigation method at present has a limit...

Full description

Saved in:
Bibliographic Details
Main Author: Foo, Grace Hui Bin.
Other Authors: Law Wing-Keung, Adrian
Format: Final Year Project
Language:English
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10356/49448
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-49448
record_format dspace
spelling sg-ntu-dr.10356-494482023-03-03T16:56:03Z Vibration of membrane modules for low pressure membrane process Foo, Grace Hui Bin. Law Wing-Keung, Adrian School of Civil and Environmental Engineering DRNTU::Engineering::Environmental engineering::Water treatment The most common fouling mitigation method used in submerged membrane bioreactor (SMBR) is through the use of aeration technology which involves providing bubbles in the SMBR system that will have a shearing efTect on the surface of the membrane. This mitigation method at present has a limitation on the shearing effect on the membrane surface. In this project, the effects of an alternative mitigation method by of applying vibration to hollow fiber membrane were stu.died. Bentonite was chosen as the feed solution to be tested at different frequenc/- and amplitudens ttre fouling rate was found to be decreased with increasing frequencies and amplitudes. Single and curLain fiber configurations were studied with the latter being tested in two positions: horizontal and vertical. It was found that the position of the membrane placed in the horizontal position have at least 98% fouling reduction as compared to vertical position. The results for different length fibers showed that the longer fiber made lower fouling rate maybe due to the potential movement in the reactor. Fibers with a little looseness tend to make better performance because of the additional movement by the looseness which can further reduce membrane fouling. At the same time, it is believed that the movement on the surface of the water might hayd certain effect on the fouling control. It is evident from the findings that vibration as a mitigation method is effective in fouling control and more studies are needed to look at the shearing effects on the membrane surface using PIV technique. Bachelor of Engineering (Environmental Engineering) 2012-05-18T07:52:26Z 2012-05-18T07:52:26Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/49448 en Nanyang Technological University 49 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Environmental engineering::Water treatment
spellingShingle DRNTU::Engineering::Environmental engineering::Water treatment
Foo, Grace Hui Bin.
Vibration of membrane modules for low pressure membrane process
description The most common fouling mitigation method used in submerged membrane bioreactor (SMBR) is through the use of aeration technology which involves providing bubbles in the SMBR system that will have a shearing efTect on the surface of the membrane. This mitigation method at present has a limitation on the shearing effect on the membrane surface. In this project, the effects of an alternative mitigation method by of applying vibration to hollow fiber membrane were stu.died. Bentonite was chosen as the feed solution to be tested at different frequenc/- and amplitudens ttre fouling rate was found to be decreased with increasing frequencies and amplitudes. Single and curLain fiber configurations were studied with the latter being tested in two positions: horizontal and vertical. It was found that the position of the membrane placed in the horizontal position have at least 98% fouling reduction as compared to vertical position. The results for different length fibers showed that the longer fiber made lower fouling rate maybe due to the potential movement in the reactor. Fibers with a little looseness tend to make better performance because of the additional movement by the looseness which can further reduce membrane fouling. At the same time, it is believed that the movement on the surface of the water might hayd certain effect on the fouling control. It is evident from the findings that vibration as a mitigation method is effective in fouling control and more studies are needed to look at the shearing effects on the membrane surface using PIV technique.
author2 Law Wing-Keung, Adrian
author_facet Law Wing-Keung, Adrian
Foo, Grace Hui Bin.
format Final Year Project
author Foo, Grace Hui Bin.
author_sort Foo, Grace Hui Bin.
title Vibration of membrane modules for low pressure membrane process
title_short Vibration of membrane modules for low pressure membrane process
title_full Vibration of membrane modules for low pressure membrane process
title_fullStr Vibration of membrane modules for low pressure membrane process
title_full_unstemmed Vibration of membrane modules for low pressure membrane process
title_sort vibration of membrane modules for low pressure membrane process
publishDate 2012
url http://hdl.handle.net/10356/49448
_version_ 1759856318997331968