Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal

The growing interest in mixed matrix membranes (MMMs) for developing photocatalytic membranes has provided a new direction in the search for efficient methods to concurrently separate and degrade contaminants. In this study, a visible light-responsive photocatalyst was blended into a polyvinylidene...

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Main Authors: Rosman, Nurafiqah, Wan Salleh, Wan Norharyati, Jaafar, Juhana, Harun, Zawati, Aziz, Farhana, Ismail, Ahmad Fauzi
Format: Article
Language:English
Published: MDPI 2022
Subjects:
Online Access:http://eprints.utm.my/101324/1/WanNorharyati2022_PhotocatalyticFiltrationofZincOxideBased.pdf
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author Rosman, Nurafiqah
Wan Salleh, Wan Norharyati
Jaafar, Juhana
Harun, Zawati
Aziz, Farhana
Ismail, Ahmad Fauzi
author_facet Rosman, Nurafiqah
Wan Salleh, Wan Norharyati
Jaafar, Juhana
Harun, Zawati
Aziz, Farhana
Ismail, Ahmad Fauzi
author_sort Rosman, Nurafiqah
collection ePrints
description The growing interest in mixed matrix membranes (MMMs) for developing photocatalytic membranes has provided a new direction in the search for efficient methods to concurrently separate and degrade contaminants. In this study, a visible light-responsive photocatalyst was blended into a polyvinylidene fluoride (PVDF) membrane casting solution to prepare PVDF- ZnO/Ag2CO3/Ag2O MMMs using the wet phase inversion method. The potential of ZnO/Ag2CO3/Ag2O as a photocatalytic component that is incorporated into the membrane was explored in detail under various loadings (0.5–2.91 wt%). The membranes were tested under ibuprofen (IBF) aqueous solution to analyze the membrane behavior in the synergistic combination of membrane filtration and photodegradation. The resulting PVDF-ZnO/Ag2CO3/Ag2O membrane with a rougher membrane surface area and excellent light harvesting capability showed higher photocatalytic filtration activity in removing IBF under visible light irradiations. The MMM fluxes demonstrated higher IBF fluxes than their initial fluxes at certain durations. This indicates that the membrane actively responds to light irradiation. The increase in the positive flux could be attributed to the photoinduced hydrophilicity generated by the ZnO/Ag2CO3/Ag2O photocatalyst, resulting in easier water layer formation and rapid transport through membranes. The highest IBF removal was demonstrated by the PVDF-ZAA2 membrane (1.96 wt% loading), with 49.96% of IBF removal within 180 min upon visible light irradiation. The reason for this lower IBF removal is that the UF membrane pores exceed the size of IBF molecules, thereby preventing the size exclusion mechanism. Thus, charge repulsion, hydrophobic adsorption, and photocatalytic activity were considered along with the IBF removal of the photocatalytic membranes. However, the recyclability of the PVDF-ZAA2 photocatalytic membrane showed a great improvement, with 99.01% of IBF removal recovery after three cycles. These results highlight the potential of such hybrid membranes in mitigating membrane fouling by providing a platform for photocatalysts to continuously degrade pollutants present in such wastewaters. Therefore, the hybridization of a photocatalyst and membrane provides insight that could be utilized to improve and retrofit current water effluent treatment methods.
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spelling utm.eprints-1013242023-06-08T09:02:09Z http://eprints.utm.my/101324/ Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal Rosman, Nurafiqah Wan Salleh, Wan Norharyati Jaafar, Juhana Harun, Zawati Aziz, Farhana Ismail, Ahmad Fauzi TP Chemical technology The growing interest in mixed matrix membranes (MMMs) for developing photocatalytic membranes has provided a new direction in the search for efficient methods to concurrently separate and degrade contaminants. In this study, a visible light-responsive photocatalyst was blended into a polyvinylidene fluoride (PVDF) membrane casting solution to prepare PVDF- ZnO/Ag2CO3/Ag2O MMMs using the wet phase inversion method. The potential of ZnO/Ag2CO3/Ag2O as a photocatalytic component that is incorporated into the membrane was explored in detail under various loadings (0.5–2.91 wt%). The membranes were tested under ibuprofen (IBF) aqueous solution to analyze the membrane behavior in the synergistic combination of membrane filtration and photodegradation. The resulting PVDF-ZnO/Ag2CO3/Ag2O membrane with a rougher membrane surface area and excellent light harvesting capability showed higher photocatalytic filtration activity in removing IBF under visible light irradiations. The MMM fluxes demonstrated higher IBF fluxes than their initial fluxes at certain durations. This indicates that the membrane actively responds to light irradiation. The increase in the positive flux could be attributed to the photoinduced hydrophilicity generated by the ZnO/Ag2CO3/Ag2O photocatalyst, resulting in easier water layer formation and rapid transport through membranes. The highest IBF removal was demonstrated by the PVDF-ZAA2 membrane (1.96 wt% loading), with 49.96% of IBF removal within 180 min upon visible light irradiation. The reason for this lower IBF removal is that the UF membrane pores exceed the size of IBF molecules, thereby preventing the size exclusion mechanism. Thus, charge repulsion, hydrophobic adsorption, and photocatalytic activity were considered along with the IBF removal of the photocatalytic membranes. However, the recyclability of the PVDF-ZAA2 photocatalytic membrane showed a great improvement, with 99.01% of IBF removal recovery after three cycles. These results highlight the potential of such hybrid membranes in mitigating membrane fouling by providing a platform for photocatalysts to continuously degrade pollutants present in such wastewaters. Therefore, the hybridization of a photocatalyst and membrane provides insight that could be utilized to improve and retrofit current water effluent treatment methods. MDPI 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/101324/1/WanNorharyati2022_PhotocatalyticFiltrationofZincOxideBased.pdf Rosman, Nurafiqah and Wan Salleh, Wan Norharyati and Jaafar, Juhana and Harun, Zawati and Aziz, Farhana and Ismail, Ahmad Fauzi (2022) Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal. Catalysts, 12 (2). pp. 1-23. ISSN 2073-4344 http://dx.doi.org/10.3390/catal12020209 DOI : 10.3390/catal12020209
spellingShingle TP Chemical technology
Rosman, Nurafiqah
Wan Salleh, Wan Norharyati
Jaafar, Juhana
Harun, Zawati
Aziz, Farhana
Ismail, Ahmad Fauzi
Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title_full Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title_fullStr Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title_full_unstemmed Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title_short Photocatalytic filtration of zinc oxide-based membrane with enhanced visible light responsiveness for ibuprofen removal
title_sort photocatalytic filtration of zinc oxide based membrane with enhanced visible light responsiveness for ibuprofen removal
topic TP Chemical technology
url http://eprints.utm.my/101324/1/WanNorharyati2022_PhotocatalyticFiltrationofZincOxideBased.pdf
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