Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models

Interfacial polymerization (IP) is a simple process for modifying thin-film composite (TFC) polymers that can be used as separation membranes in water treatment. This work describes the IP process for the preparation of polyester TFC membranes using organic monomers, in particular triethanolamine (T...

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Main Authors: Mazrul Nizam, Abu Seman, Noraaini, Ali, Nurul Ain, Jalanni, Che Ku Muhammad Faizal, Che Ku Yahya, Norhafiza Ilyana, Yatim
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2023
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/37605/
http://umpir.ump.edu.my/id/eprint/37605/1/Characterization%20assessment%20on%20nanofiltration%20membrane%20using%20steric-hindrance%20pore%20%28SHP%29.pdf
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author Mazrul Nizam, Abu Seman
Noraaini, Ali
Nurul Ain, Jalanni
Che Ku Muhammad Faizal, Che Ku Yahya
Norhafiza Ilyana, Yatim
author_facet Mazrul Nizam, Abu Seman
Noraaini, Ali
Nurul Ain, Jalanni
Che Ku Muhammad Faizal, Che Ku Yahya
Norhafiza Ilyana, Yatim
author_sort Mazrul Nizam, Abu Seman
building UMP Institutional Repository
collection Online Access
description Interfacial polymerization (IP) is a simple process for modifying thin-film composite (TFC) polymers that can be used as separation membranes in water treatment. This work describes the IP process for the preparation of polyester TFC membranes using organic monomers, in particular triethanolamine (TEOA) and trimesoyl chloride (TMC). This work includes an evaluation of monomer concentration and polymerization reaction time as variables to determine the membrane properties and its performance as acid humic removal. The characterization of TFC membranes was investigated using field emission scanning electron microscopy (FESEM), steric hindrance pore (SHP) and Teorell-Meyer-Sievers model (TMS). This IP technique resulted in the membrane (NF-PES8-35) having the lowest contact angle (θ=34.0±0.35) and lower hydrophobicity (θ=62.6 ± 0.33) compared to the unmodified membrane. The rejection of NaCl by NF-PES8-35 membrane showed the highest 0.001 M NaCl (62.42%), while NF-PES4-15 membrane showed the lowest (2.4%). The highest removal of humic acid (97.8%) was achieved when separation was performed with the NF-PES6-35 membrane and the high performance polyester TFC membranes were exhibited in the water purification filtration system.
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language English
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publisher Universiti Kebangsaan Malaysia
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spelling ump-376052023-07-06T02:49:33Z http://umpir.ump.edu.my/id/eprint/37605/ Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models Mazrul Nizam, Abu Seman Noraaini, Ali Nurul Ain, Jalanni Che Ku Muhammad Faizal, Che Ku Yahya Norhafiza Ilyana, Yatim QD Chemistry T Technology (General) TP Chemical technology Interfacial polymerization (IP) is a simple process for modifying thin-film composite (TFC) polymers that can be used as separation membranes in water treatment. This work describes the IP process for the preparation of polyester TFC membranes using organic monomers, in particular triethanolamine (TEOA) and trimesoyl chloride (TMC). This work includes an evaluation of monomer concentration and polymerization reaction time as variables to determine the membrane properties and its performance as acid humic removal. The characterization of TFC membranes was investigated using field emission scanning electron microscopy (FESEM), steric hindrance pore (SHP) and Teorell-Meyer-Sievers model (TMS). This IP technique resulted in the membrane (NF-PES8-35) having the lowest contact angle (θ=34.0±0.35) and lower hydrophobicity (θ=62.6 ± 0.33) compared to the unmodified membrane. The rejection of NaCl by NF-PES8-35 membrane showed the highest 0.001 M NaCl (62.42%), while NF-PES4-15 membrane showed the lowest (2.4%). The highest removal of humic acid (97.8%) was achieved when separation was performed with the NF-PES6-35 membrane and the high performance polyester TFC membranes were exhibited in the water purification filtration system. Universiti Kebangsaan Malaysia 2023-03 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/37605/1/Characterization%20assessment%20on%20nanofiltration%20membrane%20using%20steric-hindrance%20pore%20%28SHP%29.pdf Mazrul Nizam, Abu Seman and Noraaini, Ali and Nurul Ain, Jalanni and Che Ku Muhammad Faizal, Che Ku Yahya and Norhafiza Ilyana, Yatim (2023) Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models. Sains Malaysiana, 52 (3). pp. 941-951. ISSN 0126-6039. (Published) https://doi.org/10.17576/jsm-2023-5203-18 https://doi.org/10.17576/jsm-2023-5203-18
spellingShingle QD Chemistry
T Technology (General)
TP Chemical technology
Mazrul Nizam, Abu Seman
Noraaini, Ali
Nurul Ain, Jalanni
Che Ku Muhammad Faizal, Che Ku Yahya
Norhafiza Ilyana, Yatim
Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title_full Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title_fullStr Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title_full_unstemmed Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title_short Characterization assessment on nanofiltration membrane using steric-hindrance pore (SHP) and teorell-meyer-sievers (TMS) models
title_sort characterization assessment on nanofiltration membrane using steric-hindrance pore (shp) and teorell-meyer-sievers (tms) models
topic QD Chemistry
T Technology (General)
TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/37605/
http://umpir.ump.edu.my/id/eprint/37605/
http://umpir.ump.edu.my/id/eprint/37605/
http://umpir.ump.edu.my/id/eprint/37605/1/Characterization%20assessment%20on%20nanofiltration%20membrane%20using%20steric-hindrance%20pore%20%28SHP%29.pdf