Understanding membrane fouling of oil in water emulsion-based separations

Oil in water emulsion could be present in many industries, in terms of product or waste and the separation of the oil emulsion from the water is always a challenge due to its small size which could not efficiently handle by conventional separation technologies. Membrane technology has been increasin...

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Main Author: Tanudjaja, Henry Jonathan
Other Authors: Chew Jia Wei
Format: Theses and Dissertations
Language:English
Published: 2019
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Online Access:https://hdl.handle.net/10356/90128
http://hdl.handle.net/10220/48385
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-901282020-07-01T06:01:26Z Understanding membrane fouling of oil in water emulsion-based separations Tanudjaja, Henry Jonathan Chew Jia Wei School of Chemical and Biomedical Engineering DRNTU::Engineering::Bioengineering Oil in water emulsion could be present in many industries, in terms of product or waste and the separation of the oil emulsion from the water is always a challenge due to its small size which could not efficiently handle by conventional separation technologies. Membrane technology has been increasingly employed for this separation process due to its selective and efficient performance, but still has a drawback which is the fouling. Studies regarding the membrane fouling due to oil in water emulsions are done by Direct Observation through Membrane (DOTM) in the microfiltration system to explore more understanding about the fouling. It is observed that different operation parameter could play a role in the membrane fouling. Higher crossflow velocity and lower oil feed concentration decrease the fouling propensity regardless the type of oil used, meanwhile higher viscosity slows down oil emulsion movement on the membrane surface, and bidispersity of the oil emulsion also affects the fouling mechanism. Shear-induced diffusion model helps to predict the critical flux of the oil emulsion separation. From the DOTM images, it is understood that oil emulsion fouling evolves from individual deposit into moving stripes or became a moving oil cake layer, which is a different characteristic in comparison to the unmoved latex particle cake layer. Interaction energy model reveals the physical understanding of the interaction between oil emulsion with the membrane surface during the fouling phenomenon. Doctor of Philosophy 2019-05-27T08:19:38Z 2019-12-06T17:41:19Z 2019-05-27T08:19:38Z 2019-12-06T17:41:19Z 2019 Thesis Tanudjaja, H. J. (2019). Understanding membrane fouling of oil in water emulsion-based separations. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/90128 http://hdl.handle.net/10220/48385 10.32657/10220/48385 en 243 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Bioengineering
spellingShingle DRNTU::Engineering::Bioengineering
Tanudjaja, Henry Jonathan
Understanding membrane fouling of oil in water emulsion-based separations
description Oil in water emulsion could be present in many industries, in terms of product or waste and the separation of the oil emulsion from the water is always a challenge due to its small size which could not efficiently handle by conventional separation technologies. Membrane technology has been increasingly employed for this separation process due to its selective and efficient performance, but still has a drawback which is the fouling. Studies regarding the membrane fouling due to oil in water emulsions are done by Direct Observation through Membrane (DOTM) in the microfiltration system to explore more understanding about the fouling. It is observed that different operation parameter could play a role in the membrane fouling. Higher crossflow velocity and lower oil feed concentration decrease the fouling propensity regardless the type of oil used, meanwhile higher viscosity slows down oil emulsion movement on the membrane surface, and bidispersity of the oil emulsion also affects the fouling mechanism. Shear-induced diffusion model helps to predict the critical flux of the oil emulsion separation. From the DOTM images, it is understood that oil emulsion fouling evolves from individual deposit into moving stripes or became a moving oil cake layer, which is a different characteristic in comparison to the unmoved latex particle cake layer. Interaction energy model reveals the physical understanding of the interaction between oil emulsion with the membrane surface during the fouling phenomenon.
author2 Chew Jia Wei
author_facet Chew Jia Wei
Tanudjaja, Henry Jonathan
format Theses and Dissertations
author Tanudjaja, Henry Jonathan
author_sort Tanudjaja, Henry Jonathan
title Understanding membrane fouling of oil in water emulsion-based separations
title_short Understanding membrane fouling of oil in water emulsion-based separations
title_full Understanding membrane fouling of oil in water emulsion-based separations
title_fullStr Understanding membrane fouling of oil in water emulsion-based separations
title_full_unstemmed Understanding membrane fouling of oil in water emulsion-based separations
title_sort understanding membrane fouling of oil in water emulsion-based separations
publishDate 2019
url https://hdl.handle.net/10356/90128
http://hdl.handle.net/10220/48385
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