Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee

Nitrogen oxides (NO, NO2, and N2O) remain a major source for air pollution. They are responsible for the major environmental issues such as acid rain, photochemical smog, ozone depletion, and greenhouse impacts. To remove the NOx, several methods has been studied and one OF the method is by using se...

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Main Author: Mohd Zaini Tee, Mohd Zulhilmi
Format: Student Project
Language:English
Published: 2022
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Online Access:https://ir.uitm.edu.my/id/eprint/67270/1/67270.pdf
https://ir.uitm.edu.my/id/eprint/67270/
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spelling my.uitm.ir.672702022-10-28T03:47:40Z https://ir.uitm.edu.my/id/eprint/67270/ Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee Mohd Zaini Tee, Mohd Zulhilmi QD Chemistry Physical and theoretical chemistry Conditions and laws of chemical reactions Catalysis Nitrogen oxides (NO, NO2, and N2O) remain a major source for air pollution. They are responsible for the major environmental issues such as acid rain, photochemical smog, ozone depletion, and greenhouse impacts. To remove the NOx, several methods has been studied and one OF the method is by using selective catalytic process. Selective catalytic process can covert NOx into nitrogen gas, water and a tiny amount of carbon dioxide by using ammonia or urea as the reagent, oxygen and a catalyst. The catalyst used in the process are Ce-Mn-Ru. The three catalyst Ce- Mn-Ru for SCR are chosen and reviewed. The catalyst preparation method also being reviewed to produce the best quality catalyst for the SCR process. Qualitative analysis and quantitative analysis was used to analyse the best preparation method and best calcination temperature. The co precipitation method was the best method for the preparation of the catalyst in SCR. The calcination temperature range suitable for Ce-Mn-Ru catalyst was between 400oC to 500oC 2022 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/67270/1/67270.pdf Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee. (2022) [Student Project] <http://terminalib.uitm.edu.my/67270.pdf> (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic QD Chemistry
Physical and theoretical chemistry
Conditions and laws of chemical reactions
Catalysis
spellingShingle QD Chemistry
Physical and theoretical chemistry
Conditions and laws of chemical reactions
Catalysis
Mohd Zaini Tee, Mohd Zulhilmi
Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
description Nitrogen oxides (NO, NO2, and N2O) remain a major source for air pollution. They are responsible for the major environmental issues such as acid rain, photochemical smog, ozone depletion, and greenhouse impacts. To remove the NOx, several methods has been studied and one OF the method is by using selective catalytic process. Selective catalytic process can covert NOx into nitrogen gas, water and a tiny amount of carbon dioxide by using ammonia or urea as the reagent, oxygen and a catalyst. The catalyst used in the process are Ce-Mn-Ru. The three catalyst Ce- Mn-Ru for SCR are chosen and reviewed. The catalyst preparation method also being reviewed to produce the best quality catalyst for the SCR process. Qualitative analysis and quantitative analysis was used to analyse the best preparation method and best calcination temperature. The co precipitation method was the best method for the preparation of the catalyst in SCR. The calcination temperature range suitable for Ce-Mn-Ru catalyst was between 400oC to 500oC
format Student Project
author Mohd Zaini Tee, Mohd Zulhilmi
author_facet Mohd Zaini Tee, Mohd Zulhilmi
author_sort Mohd Zaini Tee, Mohd Zulhilmi
title Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
title_short Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
title_full Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
title_fullStr Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
title_full_unstemmed Effect of calcination temperature on the activation performance of Ce-Mn-Ru catalyst for selective catalytic reduction of no with NH3: a review / Mohd Zulhilmi Mohd Zaini Tee
title_sort effect of calcination temperature on the activation performance of ce-mn-ru catalyst for selective catalytic reduction of no with nh3: a review / mohd zulhilmi mohd zaini tee
publishDate 2022
url https://ir.uitm.edu.my/id/eprint/67270/1/67270.pdf
https://ir.uitm.edu.my/id/eprint/67270/
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