Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment
Membrane bioreactors (MBRs) and microbial electrochemical systems (MESs) are promising technologies for wastewater treatment and generation of electricity from organic matter. The application of MBRs is limited due to membrane fouling and high energy consumption. The novel design of the coupling sys...
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2023
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my.utm.1058792024-05-20T07:25:39Z http://eprints.utm.my/105879/ Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment Daud, Siti Mariam Noor, Zainura Zainon Ahmad Mutamim, Noor Sabrina Baharuddin, Nurul Huda Mohd. Faizal, Azrul Nurfaiz Aris, Azmi Ibrahim, Rabialtu Sulihah TP Chemical technology Membrane bioreactors (MBRs) and microbial electrochemical systems (MESs) are promising technologies for wastewater treatment and generation of electricity from organic matter. The application of MBRs is limited due to membrane fouling and high energy consumption. The novel design of the coupling system of microbial fuel cell and membrane bioreactor (MFC-MBR), which efficiently combines microbial degradation in MFCs and uses the microelectric field to reduce and mitigate membrane fouling in MBR. The fundamentals of extracellular electron transport, the performance of MFCs, different types of MBR systems, and the novelty of the MFC-MBR coupling system for wastewater treatment are reviewed. John Wiley and Sons Inc 2023 Article PeerReviewed Daud, Siti Mariam and Noor, Zainura Zainon and Ahmad Mutamim, Noor Sabrina and Baharuddin, Nurul Huda and Mohd. Faizal, Azrul Nurfaiz and Aris, Azmi and Ibrahim, Rabialtu Sulihah (2023) Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment. Chemical Engineering and Technology, 46 (8). pp. 1648-1663. ISSN 0930-7516 http://dx.doi.org/10.1002/ceat.202300064 DOI : 10.1002/ceat.202300064 |
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TP Chemical technology Daud, Siti Mariam Noor, Zainura Zainon Ahmad Mutamim, Noor Sabrina Baharuddin, Nurul Huda Mohd. Faizal, Azrul Nurfaiz Aris, Azmi Ibrahim, Rabialtu Sulihah Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
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Membrane bioreactors (MBRs) and microbial electrochemical systems (MESs) are promising technologies for wastewater treatment and generation of electricity from organic matter. The application of MBRs is limited due to membrane fouling and high energy consumption. The novel design of the coupling system of microbial fuel cell and membrane bioreactor (MFC-MBR), which efficiently combines microbial degradation in MFCs and uses the microelectric field to reduce and mitigate membrane fouling in MBR. The fundamentals of extracellular electron transport, the performance of MFCs, different types of MBR systems, and the novelty of the MFC-MBR coupling system for wastewater treatment are reviewed. |
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Article |
author |
Daud, Siti Mariam Noor, Zainura Zainon Ahmad Mutamim, Noor Sabrina Baharuddin, Nurul Huda Mohd. Faizal, Azrul Nurfaiz Aris, Azmi Ibrahim, Rabialtu Sulihah |
author_facet |
Daud, Siti Mariam Noor, Zainura Zainon Ahmad Mutamim, Noor Sabrina Baharuddin, Nurul Huda Mohd. Faizal, Azrul Nurfaiz Aris, Azmi Ibrahim, Rabialtu Sulihah |
author_sort |
Daud, Siti Mariam |
title |
Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
title_short |
Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
title_full |
Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
title_fullStr |
Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
title_full_unstemmed |
Microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
title_sort |
microbial electrochemical systems and membrane bioreactor technology for wastewater treatment |
publisher |
John Wiley and Sons Inc |
publishDate |
2023 |
url |
http://eprints.utm.my/105879/ http://dx.doi.org/10.1002/ceat.202300064 |
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1800082676362772480 |
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13.18916 |