Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms
Direct membrane filtration (DMF) of municipal wastewater offers an alternative solution for centralized and decentralized wastewater treatment in Iceland. The efficiency of biological-based wastewater treatment is restricted in Iceland, due to low temperatures and high wastewater inflow rates with e...
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ftskemman:oai:skemman.is:1946/35846 2023-05-15T16:47:18+02:00 Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms Selina Hube 1996- Háskóli Íslands 2020-05 application/pdf http://hdl.handle.net/1946/35846 en eng https://doi.org/10.1016/j.scitotenv.2019.136375 http://hdl.handle.net/1946/35846 Umhverfisverkfræði Frárennsli Vatnsgæði Thesis Master's 2020 ftskemman https://doi.org/10.1016/j.scitotenv.2019.136375 2022-12-11T06:59:02Z Direct membrane filtration (DMF) of municipal wastewater offers an alternative solution for centralized and decentralized wastewater treatment in Iceland. The efficiency of biological-based wastewater treatment is restricted in Iceland, due to low temperatures and high wastewater inflow rates with extremely low concentration of organics. This study aims to investigate membrane fouling mechanisms and mitigation approaches during DMF of municipal wastewater. The DMF experiments were performed using a crossflow flat sheet membrane filtration cell integrated with an optical coherence tomography (OCT) imaging system. The effects of membrane material, operation conditions and cleaning protocol on DMF performance and foulant composition were examined. The threshold flux testing results indicated that a PVDF membrane (0.08 μm) was suitable for DMF of wastewater. Increasing crossflow velocity, physical flushing frequency and flushing water temperature contributed greatly to mitigate fouling. During a continuous DMF process, reversible fouling was predominant, while during intermittent DMF with periodical physical cleaning, irreversible/ irremovable fouling was dominant. A possible shift of tightly attached cake layer to irreversible/ irremovable fouling was revealed by the direct observation of fouling via OCT. The foulants autopsy indicated that a combination of organic and inorganic foulants was attributed to membrane fouling, instead of biological fouling. Under the optimized filtration condition, sustainable long-term DMF operation (~230 h) was achieved by employing a combination of periodical physical flushing with chemical-enhanced flushing. The water quality analysis showed that the DMF process could efficiently remove solids and greater-sized soluble organics, allowing the treated water to meet wastewater discharge standards. University of Iceland Research Fund Thesis Iceland Skemman (Iceland) Science of The Total Environment 710 136375 |
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Skemman (Iceland) |
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English |
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Umhverfisverkfræði Frárennsli Vatnsgæði |
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Umhverfisverkfræði Frárennsli Vatnsgæði Selina Hube 1996- Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
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Umhverfisverkfræði Frárennsli Vatnsgæði |
description |
Direct membrane filtration (DMF) of municipal wastewater offers an alternative solution for centralized and decentralized wastewater treatment in Iceland. The efficiency of biological-based wastewater treatment is restricted in Iceland, due to low temperatures and high wastewater inflow rates with extremely low concentration of organics. This study aims to investigate membrane fouling mechanisms and mitigation approaches during DMF of municipal wastewater. The DMF experiments were performed using a crossflow flat sheet membrane filtration cell integrated with an optical coherence tomography (OCT) imaging system. The effects of membrane material, operation conditions and cleaning protocol on DMF performance and foulant composition were examined. The threshold flux testing results indicated that a PVDF membrane (0.08 μm) was suitable for DMF of wastewater. Increasing crossflow velocity, physical flushing frequency and flushing water temperature contributed greatly to mitigate fouling. During a continuous DMF process, reversible fouling was predominant, while during intermittent DMF with periodical physical cleaning, irreversible/ irremovable fouling was dominant. A possible shift of tightly attached cake layer to irreversible/ irremovable fouling was revealed by the direct observation of fouling via OCT. The foulants autopsy indicated that a combination of organic and inorganic foulants was attributed to membrane fouling, instead of biological fouling. Under the optimized filtration condition, sustainable long-term DMF operation (~230 h) was achieved by employing a combination of periodical physical flushing with chemical-enhanced flushing. The water quality analysis showed that the DMF process could efficiently remove solids and greater-sized soluble organics, allowing the treated water to meet wastewater discharge standards. University of Iceland Research Fund |
author2 |
Háskóli Íslands |
format |
Thesis |
author |
Selina Hube 1996- |
author_facet |
Selina Hube 1996- |
author_sort |
Selina Hube 1996- |
title |
Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
title_short |
Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
title_full |
Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
title_fullStr |
Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
title_full_unstemmed |
Direct Membrane Filtration of Municipal Wastewater: Linking Periodical Physical Cleaning with Fouling Mechanisms |
title_sort |
direct membrane filtration of municipal wastewater: linking periodical physical cleaning with fouling mechanisms |
publishDate |
2020 |
url |
http://hdl.handle.net/1946/35846 |
genre |
Iceland |
genre_facet |
Iceland |
op_relation |
https://doi.org/10.1016/j.scitotenv.2019.136375 http://hdl.handle.net/1946/35846 |
op_doi |
https://doi.org/10.1016/j.scitotenv.2019.136375 |
container_title |
Science of The Total Environment |
container_volume |
710 |
container_start_page |
136375 |
_version_ |
1766037395640156160 |