Characterization of CoNI-Sn catalyst for autothermal reforming methane

Autothermal reforming (ATR) is a combination of steam reforming and partial oxidation process. It is a one of the methods in producing hydrogen from natural gas. CoNiSn with different catalyst supports e.g. MgO and Al2O3 has been chose to be used on this autothermal reforming of methane (ATR). The o...

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Main Authors: Songip, Ahmad Rahman, Nasri, N. S., Tutuk, D. K., Ismail, S. R.
Format: Article
Language:English
Published: Universiti Teknologi Petronas 2004
Subjects:
Online Access:http://eprints.utm.my/5154/
http://eprints.utm.my/5154/1/A.R.Songip2004_CharacterizationOfCoNI-SnCatalyst.pdf
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author Songip, Ahmad Rahman
Nasri, N. S.
Tutuk, D. K.
Ismail, S. R.
author_facet Songip, Ahmad Rahman
Nasri, N. S.
Tutuk, D. K.
Ismail, S. R.
author_sort Songip, Ahmad Rahman
building UTeM Institutional Repository
collection Online Access
description Autothermal reforming (ATR) is a combination of steam reforming and partial oxidation process. It is a one of the methods in producing hydrogen from natural gas. CoNiSn with different catalyst supports e.g. MgO and Al2O3 has been chose to be used on this autothermal reforming of methane (ATR). The objective of this paper is to study the bulk structure of the catalyst using Temperature Programed Reduction (TPR) and X-ray Diffraction (XRD). From the TPR and XRD, the addition of tin into MgO-supported catalyst will become the anti coking agent, as it will react with carbide, since it is deposited at the outer layer of the matrix CoO-NiO-MgO solid solution phase.
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spelling utm-51542010-06-01T03:24:02Z http://eprints.utm.my/5154/ Characterization of CoNI-Sn catalyst for autothermal reforming methane Songip, Ahmad Rahman Nasri, N. S. Tutuk, D. K. Ismail, S. R. T Technology (General) Autothermal reforming (ATR) is a combination of steam reforming and partial oxidation process. It is a one of the methods in producing hydrogen from natural gas. CoNiSn with different catalyst supports e.g. MgO and Al2O3 has been chose to be used on this autothermal reforming of methane (ATR). The objective of this paper is to study the bulk structure of the catalyst using Temperature Programed Reduction (TPR) and X-ray Diffraction (XRD). From the TPR and XRD, the addition of tin into MgO-supported catalyst will become the anti coking agent, as it will react with carbide, since it is deposited at the outer layer of the matrix CoO-NiO-MgO solid solution phase. Universiti Teknologi Petronas 2004 Article PeerReviewed application/pdf en http://eprints.utm.my/5154/1/A.R.Songip2004_CharacterizationOfCoNI-SnCatalyst.pdf Songip, Ahmad Rahman and Nasri, N. S. and Tutuk, D. K. and Ismail, S. R. (2004) Characterization of CoNI-Sn catalyst for autothermal reforming methane. Proceedings of The 18th Symposium of Malaysian Chemical Engineers SOMChE 2004, 1 . pp. 1-236.
spellingShingle T Technology (General)
Songip, Ahmad Rahman
Nasri, N. S.
Tutuk, D. K.
Ismail, S. R.
Characterization of CoNI-Sn catalyst for autothermal reforming methane
title Characterization of CoNI-Sn catalyst for autothermal reforming methane
title_full Characterization of CoNI-Sn catalyst for autothermal reforming methane
title_fullStr Characterization of CoNI-Sn catalyst for autothermal reforming methane
title_full_unstemmed Characterization of CoNI-Sn catalyst for autothermal reforming methane
title_short Characterization of CoNI-Sn catalyst for autothermal reforming methane
title_sort characterization of coni-sn catalyst for autothermal reforming methane
topic T Technology (General)
url http://eprints.utm.my/5154/
http://eprints.utm.my/5154/1/A.R.Songip2004_CharacterizationOfCoNI-SnCatalyst.pdf