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Catalyst deactivation simulation through carbon deposition in carbon dioxide reforming over ni/cao-al 2o 3 catalyst

Istadi, I. and Anggoro, Didi D. and Saidina Amin, Nor Aishah and Hoo, Dorothy Wei Ling (2011) Catalyst deactivation simulation through carbon deposition in carbon dioxide reforming over ni/cao-al 2o 3 catalyst. Bulletin of Chemical Reaction Engineering and Catalysis, 6 (2). pp. 129-136. ISSN 1978-2993

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Abstract

Major problem in CO 2 reforming of methane (CORM) process is coke formation which is a carbonaceous residue that can physically cover active sites of a catalyst surface and leads to catalyst deactivation. A key to develop a more coke-resistant catalyst lies in a better understanding of the methane reforming mechanism at a molecular level. Therefore, this paper is aimed to simulate a micro-kinetic approach in order to calculate coking rate in CORM reaction. Rates of encapsulating and filamentous carbon formation are also included. The simulation results show that the studied catalyst has a high activity, and the rate of carbon formation is relatively low. This micro-kinetic modeling approach can be used as a tool to better understand the catalyst deactivation phenomena in reaction via carbon deposition.

Item Type:Article
Uncontrolled Keywords:carbon deposition
Subjects:T Technology > TP Chemical technology
Divisions:Chemical Engineering
ID Code:44771
Deposited By: Haliza Zainal
Deposited On:21 Apr 2015 03:31
Last Modified:13 Sep 2017 00:56

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