DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION

Photocatalytic hydrogen production from water using Ti02 as photocatalyst is one of the most promising method to produce hydrogen due to its low cost and environmental friendly process. However, it lacks the efficiency which is required in order to be economically feasible. This study is focused...

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Main Author: ELA, ELA NURLAELA
Format: Thesis
Language:English
Published: 2011
Subjects:
Online Access:http://utpedia.utp.edu.my/6716/1/2011%20Master%20-%20Development%20of%20Cu-NiTiO2%20Bimetallic%20Catalyst%20for%20Photohydrogen%20Production%20Under%20Vis.pdf
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spelling my-utp-utpedia.67162017-01-25T09:42:07Z http://utpedia.utp.edu.my/6716/ DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION ELA, ELA NURLAELA TP Chemical technology Photocatalytic hydrogen production from water using Ti02 as photocatalyst is one of the most promising method to produce hydrogen due to its low cost and environmental friendly process. However, it lacks the efficiency which is required in order to be economically feasible. This study is focused on enhancing the activity of Ti02 to utilize visible light by Cu-Ni incorporation onto its surface, and also improving the overall photocatalytic hydrogen production by the addition of sacrificial agent. The incorporation of Cu-Ni onto Ti02 was achieved by employing precipitation method and parameters such as calcination temperature and duration, 2011-05 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/6716/1/2011%20Master%20-%20Development%20of%20Cu-NiTiO2%20Bimetallic%20Catalyst%20for%20Photohydrogen%20Production%20Under%20Vis.pdf ELA, ELA NURLAELA (2011) DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION. Masters thesis, Universiti Teknologi Petronas.
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
ELA, ELA NURLAELA
DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
description Photocatalytic hydrogen production from water using Ti02 as photocatalyst is one of the most promising method to produce hydrogen due to its low cost and environmental friendly process. However, it lacks the efficiency which is required in order to be economically feasible. This study is focused on enhancing the activity of Ti02 to utilize visible light by Cu-Ni incorporation onto its surface, and also improving the overall photocatalytic hydrogen production by the addition of sacrificial agent. The incorporation of Cu-Ni onto Ti02 was achieved by employing precipitation method and parameters such as calcination temperature and duration,
format Thesis
author ELA, ELA NURLAELA
author_facet ELA, ELA NURLAELA
author_sort ELA, ELA NURLAELA
title DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
title_short DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
title_full DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
title_fullStr DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
title_full_unstemmed DEVELOPMENT OF Cu-Ni/Ti02 BIMETALLIC CATALYST FOR PHOTOHYDROGEN PRODUCTION UNDER VISIBLE LIGHT ILLUMINATION
title_sort development of cu-ni/ti02 bimetallic catalyst for photohydrogen production under visible light illumination
publishDate 2011
url http://utpedia.utp.edu.my/6716/1/2011%20Master%20-%20Development%20of%20Cu-NiTiO2%20Bimetallic%20Catalyst%20for%20Photohydrogen%20Production%20Under%20Vis.pdf
http://utpedia.utp.edu.my/6716/
_version_ 1739831379811631104
score 13.160551