PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION

C02 is major gas contributing in global warming. Conversion of C02 into a various product like methanol under visible light irradiation is very attractive since last century. The production of renewable fuel from carbon dioxide photoreduction using visible light irradiation has gained remarkable...

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Main Author: IQBAL, FARUKH
Format: Thesis
Language: English
Institution: Universiti Teknologi Petronas
Record Id / ISBN-0: utp-utpedia.21973 /
Published: 2017
Subjects:
Online Access: http://utpedia.utp.edu.my/21973/1/2017%20-%20CHEMICAL%20-%20PRODUCTION%20OF%20METHANOL%20FROM%20CO2%20USING%20ZNFE2O4-TiO2%20PHOOCATALYST%20UNDER%20VISIBLE%20LIGHT%20IRRADIATION%20-%20FARUKH%20IQBAL.pdf
http://utpedia.utp.edu.my/21973/
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spelling utp-utpedia.219732021-09-28T16:02:42Z http://utpedia.utp.edu.my/21973/ PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION IQBAL, FARUKH TP Chemical technology C02 is major gas contributing in global warming. Conversion of C02 into a various product like methanol under visible light irradiation is very attractive since last century. The production of renewable fuel from carbon dioxide photoreduction using visible light irradiation has gained remarkable attention due to inadequate availability of carbon-based fuel and global warming issue. The aim of current research work is to synthesize a visible light active photocatalyst for reduction of carbon dioxide into methanol under visible light irradiation. This research is based on the profound analysis of published work, which allows selection of appropriate methods and material for this research. 2017-08 Thesis NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/21973/1/2017%20-%20CHEMICAL%20-%20PRODUCTION%20OF%20METHANOL%20FROM%20CO2%20USING%20ZNFE2O4-TiO2%20PHOOCATALYST%20UNDER%20VISIBLE%20LIGHT%20IRRADIATION%20-%20FARUKH%20IQBAL.pdf IQBAL, FARUKH (2017) PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION. Masters thesis, Universiti Teknologi PETRONAS.
institution Universiti Teknologi Petronas
collection UTPedia
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
IQBAL, FARUKH
PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
description C02 is major gas contributing in global warming. Conversion of C02 into a various product like methanol under visible light irradiation is very attractive since last century. The production of renewable fuel from carbon dioxide photoreduction using visible light irradiation has gained remarkable attention due to inadequate availability of carbon-based fuel and global warming issue. The aim of current research work is to synthesize a visible light active photocatalyst for reduction of carbon dioxide into methanol under visible light irradiation. This research is based on the profound analysis of published work, which allows selection of appropriate methods and material for this research.
format Thesis
author IQBAL, FARUKH
author_sort IQBAL, FARUKH
title PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
title_short PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
title_full PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
title_fullStr PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
title_full_unstemmed PRODUCTION OF METHANOL FROM C02 USING ZnFe204-Ti02 PHOTOCATALYST UNDER VISIBLE LIGHT IRRADIATION
title_sort production of methanol from c02 using znfe204-ti02 photocatalyst under visible light irradiation
publishDate 2017
url http://utpedia.utp.edu.my/21973/1/2017%20-%20CHEMICAL%20-%20PRODUCTION%20OF%20METHANOL%20FROM%20CO2%20USING%20ZNFE2O4-TiO2%20PHOOCATALYST%20UNDER%20VISIBLE%20LIGHT%20IRRADIATION%20-%20FARUKH%20IQBAL.pdf
http://utpedia.utp.edu.my/21973/
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score 11.62408