HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon
The characteristics of catalysts impregnated in coconut shell (CS) and palm kernel shell (PKS) activated carbon were determined as potential precursors of catalysts used in a flue gas denitrification system at low temperature. In this study, Manganese (Mn) and Copper (Cu) with metal loading of 8% we...
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unimas-151732017-02-17T02:12:57Z http://ir.unimas.my/15173/ HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon Sherra Bellina, Barrabas Rubiyah, Baini Norsuzailina, Mohamed Mohamed Sutan Yakub, Ibrahim Khairul Anwar, Mohamad Said Nur Syuhada, Ahmad Zauzi Noraziah, Abdul Wahab Hapiszul, Sulaiman TA Engineering (General). Civil engineering (General) TP Chemical technology The characteristics of catalysts impregnated in coconut shell (CS) and palm kernel shell (PKS) activated carbon were determined as potential precursors of catalysts used in a flue gas denitrification system at low temperature. In this study, Manganese (Mn) and Copper (Cu) with metal loading of 8% were impregnated in the activated carbon (AC) before undergoing low temperature calcination process. The morphological properties of samples was analysed using Scanning Electron Microscopy (SEM) and Brunauer, Emmett and Teller (BET) was used to determine the surface area and pore size of samples. The exhaust gas from a diesel engine at a constant flow rate of 4L/min was passed through in a fixed-bed catalytic reactor containing the catalyst, and the concentration of NOx was measured for temperatures ranging from 150°C to 250°C. It was found that the CS catalysts (CS-Mn and CS-Cu) and PKS catalysts (PKS-Mn and PKS-Cu) have the potential to reduce NOx concentration, and results showed that the metal loading of 8% resulted NOx reduction ranging from ~48% to 64%. EDP Sciences 2016-12-12 Article PeerReviewed text en http://ir.unimas.my/15173/1/HC-SCR-NOinfxinf-Reduction-using-Mn-and-Cu-Catalysts-Impregnated-in-Coconut-and-Palm-Kernel-Shell-Activated-Carbon_2016_MATEC-Web-of-Conferences.html Sherra Bellina, Barrabas and Rubiyah, Baini and Norsuzailina, Mohamed Mohamed Sutan and Yakub, Ibrahim and Khairul Anwar, Mohamad Said and Nur Syuhada, Ahmad Zauzi and Noraziah, Abdul Wahab and Hapiszul, Sulaiman (2016) HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon. MATEC Web of Conferences, 87. ISSN 2261236X https://www.scopus.com/inward/record.uri?eid=2-s2.0-85009067297&doi=10.1051%2fmatecconf%2f20178703004&partnerID=40&md5=8376b86f7889c81a07867be5ae681986 DOI: 10.1051/matecconf/20178703004 |
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TA Engineering (General). Civil engineering (General) TP Chemical technology |
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TA Engineering (General). Civil engineering (General) TP Chemical technology Sherra Bellina, Barrabas Rubiyah, Baini Norsuzailina, Mohamed Mohamed Sutan Yakub, Ibrahim Khairul Anwar, Mohamad Said Nur Syuhada, Ahmad Zauzi Noraziah, Abdul Wahab Hapiszul, Sulaiman HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
description |
The characteristics of catalysts impregnated in coconut shell (CS) and palm kernel shell (PKS) activated carbon were determined as potential precursors of catalysts used in a flue gas denitrification system at low temperature. In this study, Manganese (Mn) and Copper (Cu) with metal loading of 8% were impregnated in the activated carbon (AC) before undergoing low temperature calcination process. The morphological properties of samples was analysed using Scanning Electron Microscopy (SEM) and Brunauer, Emmett and Teller (BET) was used to determine the surface area and pore size of samples. The exhaust gas from a diesel engine at a constant flow rate of 4L/min was passed through in a fixed-bed catalytic reactor containing the catalyst, and the concentration of NOx was measured for temperatures ranging from 150°C to 250°C. It was found that the CS catalysts (CS-Mn and CS-Cu) and PKS catalysts (PKS-Mn and PKS-Cu) have the potential to reduce NOx concentration, and results showed that the metal loading of 8% resulted NOx reduction ranging from ~48% to 64%. |
format |
Article |
author |
Sherra Bellina, Barrabas Rubiyah, Baini Norsuzailina, Mohamed Mohamed Sutan Yakub, Ibrahim Khairul Anwar, Mohamad Said Nur Syuhada, Ahmad Zauzi Noraziah, Abdul Wahab Hapiszul, Sulaiman |
author_facet |
Sherra Bellina, Barrabas Rubiyah, Baini Norsuzailina, Mohamed Mohamed Sutan Yakub, Ibrahim Khairul Anwar, Mohamad Said Nur Syuhada, Ahmad Zauzi Noraziah, Abdul Wahab Hapiszul, Sulaiman |
author_sort |
Sherra Bellina, Barrabas |
title |
HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
title_short |
HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
title_full |
HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
title_fullStr |
HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
title_full_unstemmed |
HC-SCR: NOx Reduction using Mn and Cu Catalysts Impregnated in Coconut and Palm Kernel Shell Activated Carbon |
title_sort |
hc-scr: nox reduction using mn and cu catalysts impregnated in coconut and palm kernel shell activated carbon |
publisher |
EDP Sciences |
publishDate |
2016 |
url |
http://ir.unimas.my/15173/ http://ir.unimas.my/15173/ http://ir.unimas.my/15173/ http://ir.unimas.my/15173/1/HC-SCR-NOinfxinf-Reduction-using-Mn-and-Cu-Catalysts-Impregnated-in-Coconut-and-Palm-Kernel-Shell-Activated-Carbon_2016_MATEC-Web-of-Conferences.html |
first_indexed |
2018-09-06T16:20:24Z |
last_indexed |
2018-09-06T16:20:24Z |
_version_ |
1610875744724975616 |