Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge

Application of anaerobic membrane bioreactor is strictly limited by the membrane fouling because of the fouling prone nature of the feed. This study evaluates a method to enhance the effectiveness of a bubbling system for fouling control in filtration of anaerobic digestion sludge treating palm oil...

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Main Authors: Mohamad Annuar, A., Mat Nawi, N. I., Bilad, M. R., Jaafar, J., Marbelia, L., Nandianto, A. B. D.
Format: Article
Published: Elsevier Ltd. 2020
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Online Access:http://eprints.utm.my/id/eprint/87524/
http://www.dx.doi.org/ 10.1016/j.jwpe.2020.101350
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spelling my.utm.875242020-11-08T04:05:35Z http://eprints.utm.my/id/eprint/87524/ Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge Mohamad Annuar, A. Mat Nawi, N. I. Bilad, M. R. Jaafar, J. Marbelia, L. Nandianto, A. B. D. TP Chemical technology Application of anaerobic membrane bioreactor is strictly limited by the membrane fouling because of the fouling prone nature of the feed. This study evaluates a method to enhance the effectiveness of a bubbling system for fouling control in filtration of anaerobic digestion sludge treating palm oil mill effluent using a tilted panel system. Such system is expected to enhance the role of biogas recirculation as the bubbling fluid for membrane fouling control. Effect of tilting angle, bubbling rate, intermittent bubbling period, and panel switching period was investigated. The energy consumption for applying such system was also estimated. Results show that the tilted panel with bubbling remarkably enhance permeability by more than double of the vertical system to reach a maximum value of 87 Lm−2h−1bar−1, the highest value reported so far. The panel switching mechanism helps to enhance the system throughput by allowing two-sided membrane panel with intermittently bubbling, in the expense of mechanical switching energy. The estimation of energy consumption of the system has been estimated at 0.247 kWhm−3, corresponding to 0.3 % of total electricity generated from anaerobic treatment of POME, very attractive for full-scale implementation. Elsevier Ltd. 2020-08 Article PeerReviewed Mohamad Annuar, A. and Mat Nawi, N. I. and Bilad, M. R. and Jaafar, J. and Marbelia, L. and Nandianto, A. B. D. (2020) Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge. Journal of Water Process Engineering, 36 . ISSN 2214-7144 http://www.dx.doi.org/ 10.1016/j.jwpe.2020.101350 DOI: 10.1016/j.jwpe.2020.101350
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Mohamad Annuar, A.
Mat Nawi, N. I.
Bilad, M. R.
Jaafar, J.
Marbelia, L.
Nandianto, A. B. D.
Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
description Application of anaerobic membrane bioreactor is strictly limited by the membrane fouling because of the fouling prone nature of the feed. This study evaluates a method to enhance the effectiveness of a bubbling system for fouling control in filtration of anaerobic digestion sludge treating palm oil mill effluent using a tilted panel system. Such system is expected to enhance the role of biogas recirculation as the bubbling fluid for membrane fouling control. Effect of tilting angle, bubbling rate, intermittent bubbling period, and panel switching period was investigated. The energy consumption for applying such system was also estimated. Results show that the tilted panel with bubbling remarkably enhance permeability by more than double of the vertical system to reach a maximum value of 87 Lm−2h−1bar−1, the highest value reported so far. The panel switching mechanism helps to enhance the system throughput by allowing two-sided membrane panel with intermittently bubbling, in the expense of mechanical switching energy. The estimation of energy consumption of the system has been estimated at 0.247 kWhm−3, corresponding to 0.3 % of total electricity generated from anaerobic treatment of POME, very attractive for full-scale implementation.
format Article
author Mohamad Annuar, A.
Mat Nawi, N. I.
Bilad, M. R.
Jaafar, J.
Marbelia, L.
Nandianto, A. B. D.
author_facet Mohamad Annuar, A.
Mat Nawi, N. I.
Bilad, M. R.
Jaafar, J.
Marbelia, L.
Nandianto, A. B. D.
author_sort Mohamad Annuar, A.
title Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
title_short Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
title_full Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
title_fullStr Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
title_full_unstemmed Improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
title_sort improved bubbling for membrane fouling control in filtration of palm oil mill effluent anaerobic digester sludge
publisher Elsevier Ltd.
publishDate 2020
url http://eprints.utm.my/id/eprint/87524/
http://www.dx.doi.org/ 10.1016/j.jwpe.2020.101350
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score 13.211869