Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound

This study investigate the performance and physical properties of polymer mixed membrane integrated with the microflower of titanium dioxide (TiO2) that synthesized at different temperature value. Microflower TiO2 has been prepared by hydrothermal method with variation of synthesized temperature...

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Main Authors: Ahmad, Raja Adibah, Harun, Zawati, Azhar, Faiz Hafeez, Hussin, Rosniza, Mohd Zin, Mohamad Faiz, Sazali, Norsuhailizah, Syamsul Bahri, Syamsutajri, Jamaluddin, Mohd Riduan, Misdan, Nurasyikin, Kamdi, Zakiah, Hairom, Nur Hanis Hayati
Format: Article
Language:English
Published: Elsevier 2021
Subjects:
Online Access:http://eprints.uthm.edu.my/6641/1/P13064_577077043bd49ace2d68d6bd260dc1f5.pdf
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author Ahmad, Raja Adibah
Harun, Zawati
Azhar, Faiz Hafeez
Hussin, Rosniza
Mohd Zin, Mohamad Faiz
Sazali, Norsuhailizah
Syamsul Bahri, Syamsutajri
Jamaluddin, Mohd Riduan
Misdan, Nurasyikin
Kamdi, Zakiah
Hairom, Nur Hanis Hayati
author_facet Ahmad, Raja Adibah
Harun, Zawati
Azhar, Faiz Hafeez
Hussin, Rosniza
Mohd Zin, Mohamad Faiz
Sazali, Norsuhailizah
Syamsul Bahri, Syamsutajri
Jamaluddin, Mohd Riduan
Misdan, Nurasyikin
Kamdi, Zakiah
Hairom, Nur Hanis Hayati
author_sort Ahmad, Raja Adibah
collection UTHM
description This study investigate the performance and physical properties of polymer mixed membrane integrated with the microflower of titanium dioxide (TiO2) that synthesized at different temperature value. Microflower TiO2 has been prepared by hydrothermal method with variation of synthesized temperature at 120 �C, 150 �C and 180 �C and the polymer flat sheet membranes were fabricated via phase inversion technique. In this present work, TiO2 was used as photocatalytic, antifouling and hydrophilicity improve�ment. Synthesized microflower TiO2 via hydrothermal method offer higher surface area that able to speed up any chemical reaction of TiO2. Prior to the fabrication of polymer mixed matric membrane, the char�acterization of TiO2 have been conducted to determine the optimum synthesize temperature. Then this was followed by the measurement of properties and performance of the polymer mixed matric mem�brane. Further observation on the self-cleaning test at different concentration of TiO2 wt (%) of the mem�branes were conducted. The results obtained showed that membrane at temperature of 150 �C with 2.5% of TiO2 wt (%) shows a better result than others with the highest rejection rate of 99.43% that probably due to small finger like structure. Meanwhile for self- cleaning test, membrane with synthesized temper�ature of 150 �C showed a better result than others with the highest of retention rate before and after being exposed to UV light which were 99.42% and 98.66% respectively. Humic acid flux recovery ratio (FRR) showed a better performance for membrane at synthesized temperature of 120 �C that may relate to the effect of higher surface area that TiO2 that able to attract more water. As conclusion, PSf/TiO2 membrane at synthesized temperature of 150 �C with 2.5% of TiO2 wt (%) shows an excellent result that possessed a strong hydrophilic property by lowering the fouling effect and give higher retention value. � 2020 Elsevier Ltd. All rights reserved
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spelling uthm.eprints-66412022-03-14T01:23:07Z http://eprints.uthm.edu.my/6641/ Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound Ahmad, Raja Adibah Harun, Zawati Azhar, Faiz Hafeez Hussin, Rosniza Mohd Zin, Mohamad Faiz Sazali, Norsuhailizah Syamsul Bahri, Syamsutajri Jamaluddin, Mohd Riduan Misdan, Nurasyikin Kamdi, Zakiah Hairom, Nur Hanis Hayati TP200-248 Chemicals: Manufacture, use, etc. This study investigate the performance and physical properties of polymer mixed membrane integrated with the microflower of titanium dioxide (TiO2) that synthesized at different temperature value. Microflower TiO2 has been prepared by hydrothermal method with variation of synthesized temperature at 120 �C, 150 �C and 180 �C and the polymer flat sheet membranes were fabricated via phase inversion technique. In this present work, TiO2 was used as photocatalytic, antifouling and hydrophilicity improve�ment. Synthesized microflower TiO2 via hydrothermal method offer higher surface area that able to speed up any chemical reaction of TiO2. Prior to the fabrication of polymer mixed matric membrane, the char�acterization of TiO2 have been conducted to determine the optimum synthesize temperature. Then this was followed by the measurement of properties and performance of the polymer mixed matric mem�brane. Further observation on the self-cleaning test at different concentration of TiO2 wt (%) of the mem�branes were conducted. The results obtained showed that membrane at temperature of 150 �C with 2.5% of TiO2 wt (%) shows a better result than others with the highest rejection rate of 99.43% that probably due to small finger like structure. Meanwhile for self- cleaning test, membrane with synthesized temper�ature of 150 �C showed a better result than others with the highest of retention rate before and after being exposed to UV light which were 99.42% and 98.66% respectively. Humic acid flux recovery ratio (FRR) showed a better performance for membrane at synthesized temperature of 120 �C that may relate to the effect of higher surface area that TiO2 that able to attract more water. As conclusion, PSf/TiO2 membrane at synthesized temperature of 150 �C with 2.5% of TiO2 wt (%) shows an excellent result that possessed a strong hydrophilic property by lowering the fouling effect and give higher retention value. � 2020 Elsevier Ltd. All rights reserved Elsevier 2021 Article PeerReviewed text en http://eprints.uthm.edu.my/6641/1/P13064_577077043bd49ace2d68d6bd260dc1f5.pdf Ahmad, Raja Adibah and Harun, Zawati and Azhar, Faiz Hafeez and Hussin, Rosniza and Mohd Zin, Mohamad Faiz and Sazali, Norsuhailizah and Syamsul Bahri, Syamsutajri and Jamaluddin, Mohd Riduan and Misdan, Nurasyikin and Kamdi, Zakiah and Hairom, Nur Hanis Hayati (2021) Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound. Materials Today: Proceedings, 46. pp. 2122-2130. https://doi.org/10.1016/j.matpr.2021.05.684
spellingShingle TP200-248 Chemicals: Manufacture, use, etc.
Ahmad, Raja Adibah
Harun, Zawati
Azhar, Faiz Hafeez
Hussin, Rosniza
Mohd Zin, Mohamad Faiz
Sazali, Norsuhailizah
Syamsul Bahri, Syamsutajri
Jamaluddin, Mohd Riduan
Misdan, Nurasyikin
Kamdi, Zakiah
Hairom, Nur Hanis Hayati
Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title_full Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title_fullStr Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title_full_unstemmed Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title_short Polymer mixed membrane with microflower TiO2 as additive for photocatalyst in organic compound
title_sort polymer mixed membrane with microflower tio2 as additive for photocatalyst in organic compound
topic TP200-248 Chemicals: Manufacture, use, etc.
url http://eprints.uthm.edu.my/6641/1/P13064_577077043bd49ace2d68d6bd260dc1f5.pdf
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