Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru

The presence of methylene blue (MB) MB ) dye in aquatic environments poses an environmental threat that has become a global issue. The complex aromatic structure, hydrophilic properties, and stability of MB make it difficult to remove using conventional water treatment processes. Photocatalytic meth...

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Published in:SAINS MALAYSIANA
Main Authors: Othaman, Rizafizah; Othman, Sharifah Edeyatul Qhusrah Syed; Jon, Nazwa; Ghazali, Zaitun; Firdaus, Mohd; Yusoff, Mohd; Kamarudin, Diyana
Format: Article
Language:English
Published: UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276104600012
author Othaman
Rizafizah; Othman
Sharifah Edeyatul Qhusrah Syed; Jon
Nazwa; Ghazali
Zaitun; Firdaus
Mohd; Yusoff
Mohd; Kamarudin
Diyana
spellingShingle Othaman
Rizafizah; Othman
Sharifah Edeyatul Qhusrah Syed; Jon
Nazwa; Ghazali
Zaitun; Firdaus
Mohd; Yusoff
Mohd; Kamarudin
Diyana
Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
Science & Technology - Other Topics
author_facet Othaman
Rizafizah; Othman
Sharifah Edeyatul Qhusrah Syed; Jon
Nazwa; Ghazali
Zaitun; Firdaus
Mohd; Yusoff
Mohd; Kamarudin
Diyana
author_sort Othaman
spelling Othaman, Rizafizah; Othman, Sharifah Edeyatul Qhusrah Syed; Jon, Nazwa; Ghazali, Zaitun; Firdaus, Mohd; Yusoff, Mohd; Kamarudin, Diyana
Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
SAINS MALAYSIANA
English
Article
The presence of methylene blue (MB) MB ) dye in aquatic environments poses an environmental threat that has become a global issue. The complex aromatic structure, hydrophilic properties, and stability of MB make it difficult to remove using conventional water treatment processes. Photocatalytic methods using nanoparticles like TiO2 2 and ZnO2 2 can degrade MB. . However, the drawbacks of TiO2 2 as a photocatalyst include a large energy band gap requiring high energy such as ultraviolet radiation, the recombination of electron-hole pairs leading to reduced photoactivity, and the difficulty in using it in powder form. In this study, TiO2 2 nanoparticles were modified with silver (Ag) and immobilized onto a polyacrylonitrile ( PAN ) membrane to treat MB under visible light. The Ag/TiO2 2 photocatalyst was synthesized through a green synthesis method using Beko leaf ( Oroxylum indicum) ) extract, which acts as a reducing and stabilizing agent. The resulting photocatalyst was immobilized on the surface of the PAN membrane using a dip-coating method at different solution concentrations (0.2, 0.6, and 1.0 g/L). The effects of adding Ag/TiO2 2 photocatalyst on the physicochemical properties and morphology of the membrane were characterized. The efficiency of degrading MB samples was evaluated through the photodegradation of MB dye under optimal conditions under visible light. XRD diffractogram indicated that the TiO2 2 nanoparticle structure was in the anatase phase and suitable as a photocatalyst. PAN membrane dipped in 1.0 g/L Ag/TiO2 2 solution showed the highest MB photodegradation percentage of 74.52% with a membrane band gap energy of 2.19 eV. It can be concluded that Ag/TiO2-coated 2-coated PAN membrane is an effective approach for removing MB under visible light. This study contributes to future water treatment technology due to its environmentally friendly synthesis method and more effective water treatment.
UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY
0126-6039

2024
53
7
10.17576/jsm-2024-5307-12
Science & Technology - Other Topics

WOS:001276104600012
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276104600012
title Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
title_short Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
title_full Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
title_fullStr Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
title_full_unstemmed Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
title_sort Imobilisasi Nanozarah Ag/TiO2 Ekstrak Beko pada Membran Fotomangkin Poliakrilonitril(PAN) untuk Penyingkiran Pewarna Metilena Biru
container_title SAINS MALAYSIANA
language English
format Article
description The presence of methylene blue (MB) MB ) dye in aquatic environments poses an environmental threat that has become a global issue. The complex aromatic structure, hydrophilic properties, and stability of MB make it difficult to remove using conventional water treatment processes. Photocatalytic methods using nanoparticles like TiO2 2 and ZnO2 2 can degrade MB. . However, the drawbacks of TiO2 2 as a photocatalyst include a large energy band gap requiring high energy such as ultraviolet radiation, the recombination of electron-hole pairs leading to reduced photoactivity, and the difficulty in using it in powder form. In this study, TiO2 2 nanoparticles were modified with silver (Ag) and immobilized onto a polyacrylonitrile ( PAN ) membrane to treat MB under visible light. The Ag/TiO2 2 photocatalyst was synthesized through a green synthesis method using Beko leaf ( Oroxylum indicum) ) extract, which acts as a reducing and stabilizing agent. The resulting photocatalyst was immobilized on the surface of the PAN membrane using a dip-coating method at different solution concentrations (0.2, 0.6, and 1.0 g/L). The effects of adding Ag/TiO2 2 photocatalyst on the physicochemical properties and morphology of the membrane were characterized. The efficiency of degrading MB samples was evaluated through the photodegradation of MB dye under optimal conditions under visible light. XRD diffractogram indicated that the TiO2 2 nanoparticle structure was in the anatase phase and suitable as a photocatalyst. PAN membrane dipped in 1.0 g/L Ag/TiO2 2 solution showed the highest MB photodegradation percentage of 74.52% with a membrane band gap energy of 2.19 eV. It can be concluded that Ag/TiO2-coated 2-coated PAN membrane is an effective approach for removing MB under visible light. This study contributes to future water treatment technology due to its environmentally friendly synthesis method and more effective water treatment.
publisher UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY
issn 0126-6039

publishDate 2024
container_volume 53
container_issue 7
doi_str_mv 10.17576/jsm-2024-5307-12
topic Science & Technology - Other Topics
topic_facet Science & Technology - Other Topics
accesstype
id WOS:001276104600012
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276104600012
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