TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION

Clean water scarcity is a critical issue faced by the world. It was caused by insufficient potable water supply and a high cost of water purification systems. As a result, a photothermal evaporator system with the property to absorb light/solar energy and then convert it to heat energy has been rapi...

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Published in:Suranaree Journal of Science and Technology
Main Author: Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
Format: Article
Language:English
Published: Suranaree University of Technology 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195506075&doi=10.55766%2fsujst-2024-02-e04940&partnerID=40&md5=9d193ac63fe2d9db151e31473e4f4382
id 2-s2.0-85195506075
spelling 2-s2.0-85195506075
Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
2024
Suranaree Journal of Science and Technology
31
2
10.55766/sujst-2024-02-e04940
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195506075&doi=10.55766%2fsujst-2024-02-e04940&partnerID=40&md5=9d193ac63fe2d9db151e31473e4f4382
Clean water scarcity is a critical issue faced by the world. It was caused by insufficient potable water supply and a high cost of water purification systems. As a result, a photothermal evaporator system with the property to absorb light/solar energy and then convert it to heat energy has been rapidly developed. In this work, a solar-driven water evaporation was designed for desalination. The solar evaporator comprises a photothermal molybdenum disulfide-titanium dioxide (MoS2-TiO2) composite layer supported onto a cheap filter paper attached. The filter paper was attached to polystyrene foam for support and cotton thread in the centre of the filter paper for water transportation. MoS2-TiO2 composite was synthesized and coated onto the filter paper using a simple vacuum-assisted method. Before the solar-driven water evaporation testing, the MoS2-TiO2 composite was first characterized using XRD and Raman spectroscopy. The characterization results indicate that MoS2 introduction into the TiO2 structure improved the photosensitivity due to the reduction of the bandgap energy from 3.1 eV for TiO2 to 1.6 eV. The performance of the developed solar evaporator was tested using 35,000 ppm NaCl solution under sunlight for 24 h intermittently. The TiO2-MoS2 solar evaporator was observed to have the highest photothermal ability, with 0.807 kg‧m-2‧h-1 evaporation performance and 55.9 % photothermal efficiency compared to other solar evaporators. This indicated that introducing the photothermal MoS2-TiO2 layer could enhance the solar evaporator performances, making it promising for the desalination application, particularly in impoverished areas with water scarcity. © (2024) Suranaree University of Technology. All rights reserved.
Suranaree University of Technology
0858849X
English
Article

author Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
spellingShingle Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
author_facet Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
author_sort Fuzil N.S.; Othman N.H.; Mat-Shayuti M.S.; Alias N.H.; Marpani F.; Shahruddin M.Z.; Rahman N.A.; Rashid Z.A.; Razlan M.R.M.; Lau W.J.; Othman M.H.D.; Ismail A.F.; Kusworo T.D.; Ul-Hamid A.
title TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
title_short TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
title_full TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
title_fullStr TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
title_full_unstemmed TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
title_sort TIO2-MOS2 PAPER BASED MEMBRANE FOR SOLAR EVAPORATION
publishDate 2024
container_title Suranaree Journal of Science and Technology
container_volume 31
container_issue 2
doi_str_mv 10.55766/sujst-2024-02-e04940
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85195506075&doi=10.55766%2fsujst-2024-02-e04940&partnerID=40&md5=9d193ac63fe2d9db151e31473e4f4382
description Clean water scarcity is a critical issue faced by the world. It was caused by insufficient potable water supply and a high cost of water purification systems. As a result, a photothermal evaporator system with the property to absorb light/solar energy and then convert it to heat energy has been rapidly developed. In this work, a solar-driven water evaporation was designed for desalination. The solar evaporator comprises a photothermal molybdenum disulfide-titanium dioxide (MoS2-TiO2) composite layer supported onto a cheap filter paper attached. The filter paper was attached to polystyrene foam for support and cotton thread in the centre of the filter paper for water transportation. MoS2-TiO2 composite was synthesized and coated onto the filter paper using a simple vacuum-assisted method. Before the solar-driven water evaporation testing, the MoS2-TiO2 composite was first characterized using XRD and Raman spectroscopy. The characterization results indicate that MoS2 introduction into the TiO2 structure improved the photosensitivity due to the reduction of the bandgap energy from 3.1 eV for TiO2 to 1.6 eV. The performance of the developed solar evaporator was tested using 35,000 ppm NaCl solution under sunlight for 24 h intermittently. The TiO2-MoS2 solar evaporator was observed to have the highest photothermal ability, with 0.807 kg‧m-2‧h-1 evaporation performance and 55.9 % photothermal efficiency compared to other solar evaporators. This indicated that introducing the photothermal MoS2-TiO2 layer could enhance the solar evaporator performances, making it promising for the desalination application, particularly in impoverished areas with water scarcity. © (2024) Suranaree University of Technology. All rights reserved.
publisher Suranaree University of Technology
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language English
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