Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach

Water Formation Through Reverse Water Gas Shift And Several Other Side Reactions In Carbon Dioxide Reforming Of Methane (CORM) Have Became One Of The Major Process Hurdles That Limits Maximum Hydrogen And Syngas (H2-CO Mixture) Yields. Therefore, It Is Vital That The Study On CORM Thermodynamic Equ...

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Main Authors: Tung, Chun Yaw, Saidina Amin, Nor Aishah
Format: Article
Language:English
Published: Penerbit UTM Press 2005
Subjects:
Online Access:http://eprints.utm.my/1686/
http://eprints.utm.my/1686/1/JTDIS43F3.pdf
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author Tung, Chun Yaw
Saidina Amin, Nor Aishah
author_facet Tung, Chun Yaw
Saidina Amin, Nor Aishah
author_sort Tung, Chun Yaw
building UTeM Institutional Repository
collection Online Access
description Water Formation Through Reverse Water Gas Shift And Several Other Side Reactions In Carbon Dioxide Reforming Of Methane (CORM) Have Became One Of The Major Process Hurdles That Limits Maximum Hydrogen And Syngas (H2-CO Mixture) Yields. Therefore, It Is Vital That The Study On CORM Thermodynamic Equilibrium Takes Into Consideration The Formation Of Water In The CORM Reaction Network. Due To The Complexity Of The Reaction Network, Lagrange’s Undetermined Multiplier Was Employed In The Present Work And Its Applicability Had Been Proven Throughout This Study. The Equilibrium Compositions Improved Drastically From 600-1000K, But The Temperature Effect Becomes Insignificant Above 1000K. Furthermore, CO/H2 Ratio Close To Unity Can Be Achieved At Lower CO2 /CH4 Feed Ratios But Equal CO2 /CH4 Feed Ratios Is Required To Obtain Higher H2 And CO Yields At Temperature 1000K And Above. These Findings Are In Strong Agreement With Laboratory Experimental Results Reported In Literature.
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spelling utm-16862017-11-01T04:17:33Z http://eprints.utm.my/1686/ Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach Tung, Chun Yaw Saidina Amin, Nor Aishah Q Science (General) T Technology (General) Water Formation Through Reverse Water Gas Shift And Several Other Side Reactions In Carbon Dioxide Reforming Of Methane (CORM) Have Became One Of The Major Process Hurdles That Limits Maximum Hydrogen And Syngas (H2-CO Mixture) Yields. Therefore, It Is Vital That The Study On CORM Thermodynamic Equilibrium Takes Into Consideration The Formation Of Water In The CORM Reaction Network. Due To The Complexity Of The Reaction Network, Lagrange’s Undetermined Multiplier Was Employed In The Present Work And Its Applicability Had Been Proven Throughout This Study. The Equilibrium Compositions Improved Drastically From 600-1000K, But The Temperature Effect Becomes Insignificant Above 1000K. Furthermore, CO/H2 Ratio Close To Unity Can Be Achieved At Lower CO2 /CH4 Feed Ratios But Equal CO2 /CH4 Feed Ratios Is Required To Obtain Higher H2 And CO Yields At Temperature 1000K And Above. These Findings Are In Strong Agreement With Laboratory Experimental Results Reported In Literature. Penerbit UTM Press 2005-12 Article PeerReviewed application/pdf en http://eprints.utm.my/1686/1/JTDIS43F3.pdf Tung, Chun Yaw and Saidina Amin, Nor Aishah (2005) Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach. Jurnal Teknologi F (43F). pp. 31-50. ISSN 0127-9696 http://www.jurnalteknologi.utm.my/index.php/jurnalteknologi/article/view/785
spellingShingle Q Science (General)
T Technology (General)
Tung, Chun Yaw
Saidina Amin, Nor Aishah
Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title_full Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title_fullStr Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title_full_unstemmed Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title_short Analysis Of Carbon Dioxide Reforming Of Methane Via Thermodynamic Equilibrium Approach
title_sort analysis of carbon dioxide reforming of methane via thermodynamic equilibrium approach
topic Q Science (General)
T Technology (General)
url http://eprints.utm.my/1686/
http://eprints.utm.my/1686/
http://eprints.utm.my/1686/1/JTDIS43F3.pdf