Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor

This study investigated the optimization of operating parameters by incorporating solid retention times (SRTs) and vibration frequencies for fouling mitigation of a submerged vibratory membrane bioreactor (SVMBR) treating synthetic wastewater. The performance and biomass characteristics were also ex...

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Main Author: Nur Syafawani Redzwan
Other Authors: Law Wing-Keung, Adrian
Format: Final Year Project
Language:English
Published: 2015
Subjects:
Online Access:http://hdl.handle.net/10356/63728
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-637282023-03-03T17:08:17Z Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor Nur Syafawani Redzwan Law Wing-Keung, Adrian School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering This study investigated the optimization of operating parameters by incorporating solid retention times (SRTs) and vibration frequencies for fouling mitigation of a submerged vibratory membrane bioreactor (SVMBR) treating synthetic wastewater. The performance and biomass characteristics were also examined. Over the range of SRT (10 to 200 days), the SVMBR was capable of achieving 97% of total organic carbon removal. The mean sludge particle sizes at different SRTs were in the range of 93.2 – 129.2μm, providing favorable environment for mass interaction. Experiments with prolonged SRT contributed to increasing concentrations of soluble microbial products (SMP) and extracellular polymeric substances (EPS) where EPS concentrations demonstrated an exponential increase, which signified active metabolism of microorganisms. With the aid of vibration, hydrodynamic shear stress was generated within the boundary layer of membrane surface and reduced fouling rate. It was observed that lower vibration frequency prevented mass interaction and caused accelerated attachment of foulants. Results showed that rapid fouling occurred at short SRT and low vibration frequency. Therefore, sufficiently long SRT and high vibration frequency extended membrane life and prolonged SVMBR performance. Bachelor of Engineering (Environmental Engineering) 2015-05-18T08:29:05Z 2015-05-18T08:29:05Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/63728 en Nanyang Technological University 60 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::Civil engineering
spellingShingle DRNTU::Engineering::Civil engineering
Nur Syafawani Redzwan
Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
description This study investigated the optimization of operating parameters by incorporating solid retention times (SRTs) and vibration frequencies for fouling mitigation of a submerged vibratory membrane bioreactor (SVMBR) treating synthetic wastewater. The performance and biomass characteristics were also examined. Over the range of SRT (10 to 200 days), the SVMBR was capable of achieving 97% of total organic carbon removal. The mean sludge particle sizes at different SRTs were in the range of 93.2 – 129.2μm, providing favorable environment for mass interaction. Experiments with prolonged SRT contributed to increasing concentrations of soluble microbial products (SMP) and extracellular polymeric substances (EPS) where EPS concentrations demonstrated an exponential increase, which signified active metabolism of microorganisms. With the aid of vibration, hydrodynamic shear stress was generated within the boundary layer of membrane surface and reduced fouling rate. It was observed that lower vibration frequency prevented mass interaction and caused accelerated attachment of foulants. Results showed that rapid fouling occurred at short SRT and low vibration frequency. Therefore, sufficiently long SRT and high vibration frequency extended membrane life and prolonged SVMBR performance.
author2 Law Wing-Keung, Adrian
author_facet Law Wing-Keung, Adrian
Nur Syafawani Redzwan
format Final Year Project
author Nur Syafawani Redzwan
author_sort Nur Syafawani Redzwan
title Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
title_short Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
title_full Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
title_fullStr Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
title_full_unstemmed Effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
title_sort effect of solid retention times and vibrational frrequencies on fouling mitigation of submerged vibratory membrane bioreactor
publishDate 2015
url http://hdl.handle.net/10356/63728
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