Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system

This research aims to examine the property of the ceramic (TiO2) coated activated carbon foam (TiO2-ACF) as a cooling pad. Efficiency of direct evaporative cooling system mostly depends on the cooling pad and hence, the material used in the cooling pad plays a very vital role. Here, the TiO2-ACF pad...

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Main Authors: Radhiyah, Abd Aziz, Ramprabhu, Kandasan, Nurrina, Rosli
Format: Article
Language:English
Published: Universiti Malaysia Pahang 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/22190/1/3rd%20paper-fyp%20ram.pdf
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author Radhiyah, Abd Aziz
Ramprabhu, Kandasan
Nurrina, Rosli
author_facet Radhiyah, Abd Aziz
Ramprabhu, Kandasan
Nurrina, Rosli
author_sort Radhiyah, Abd Aziz
collection UMP
description This research aims to examine the property of the ceramic (TiO2) coated activated carbon foam (TiO2-ACF) as a cooling pad. Efficiency of direct evaporative cooling system mostly depends on the cooling pad and hence, the material used in the cooling pad plays a very vital role. Here, the TiO2-ACF pad is fabricated by dipping activated carbon foam into the slurry of TiO2 which has different loading mass. The physical property of the TiO2-ACF such as stability of the cooling pad under constant and vigorous flow of water, absorbability property and photocatalytic properties were analysed. It is concluded that TiO2-ACF cooling pad can be easily fabricated and have an excellent stability and absorbability property.
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spelling UMPir221902018-11-12T01:46:15Z http://umpir.ump.edu.my/id/eprint/22190/ Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system Radhiyah, Abd Aziz Ramprabhu, Kandasan Nurrina, Rosli TS Manufactures This research aims to examine the property of the ceramic (TiO2) coated activated carbon foam (TiO2-ACF) as a cooling pad. Efficiency of direct evaporative cooling system mostly depends on the cooling pad and hence, the material used in the cooling pad plays a very vital role. Here, the TiO2-ACF pad is fabricated by dipping activated carbon foam into the slurry of TiO2 which has different loading mass. The physical property of the TiO2-ACF such as stability of the cooling pad under constant and vigorous flow of water, absorbability property and photocatalytic properties were analysed. It is concluded that TiO2-ACF cooling pad can be easily fabricated and have an excellent stability and absorbability property. Universiti Malaysia Pahang 2018-09-13 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/22190/1/3rd%20paper-fyp%20ram.pdf Radhiyah, Abd Aziz and Ramprabhu, Kandasan and Nurrina, Rosli (2018) Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system. Journal of Modern Manufacturing Systems and Technology, 1. pp. 52-60. ISSN 2636-9575. (Published) http://journal.ump.edu.my/jmmst/article/view/198 DOI: https://doi.org/10.15282/jmmst.v1i1.198
spellingShingle TS Manufactures
Radhiyah, Abd Aziz
Ramprabhu, Kandasan
Nurrina, Rosli
Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title_full Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title_fullStr Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title_full_unstemmed Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title_short Development of TiO2 coated activated carbon foam as cooling pad for direct evaporative cooling system
title_sort development of tio2 coated activated carbon foam as cooling pad for direct evaporative cooling system
topic TS Manufactures
url http://umpir.ump.edu.my/id/eprint/22190/1/3rd%20paper-fyp%20ram.pdf
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AT ramprabhukandasan developmentoftio2coatedactivatedcarbonfoamascoolingpadfordirectevaporativecoolingsystem
AT nurrinarosli developmentoftio2coatedactivatedcarbonfoamascoolingpadfordirectevaporativecoolingsystem