Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash

Mathematical modeling and applied analysis combine the strengths of applied mathematics, kinetic studies and numerical analysis to derive, analyze and solve mathematical models of complex problems. These techniques were used in this study for solving a complex heterogeneous gas-solid reaction for th...

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Main Author: Yew, Henry Foo Chee
Format: Thesis
Language:English
Published: 2010
Subjects:
Online Access:http://eprints.usm.my/42064/
http://eprints.usm.my/42064/1/Henry_Foo_Chee_Yew24.pdf
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author Yew, Henry Foo Chee
author_facet Yew, Henry Foo Chee
author_sort Yew, Henry Foo Chee
building USM Institutional Repository
collection Online Access
description Mathematical modeling and applied analysis combine the strengths of applied mathematics, kinetic studies and numerical analysis to derive, analyze and solve mathematical models of complex problems. These techniques were used in this study for solving a complex heterogeneous gas-solid reaction for the removal of sulfur dioxide (SO2) and nitrogen oxide (NO) in flue gas using siliceous sorbent. Generally, its complexities encompassed three level of studies; macro-, meso- and micro-scopic kinetic analysis. Model 1 was developed based on a global reaction rate between SO2 and coal fly ash/CaO/CaSO4 (dry sorbent).
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institution Universiti Sains Malaysia
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language English
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spelling usm-420642019-04-12T05:26:52Z http://eprints.usm.my/42064/ Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash Yew, Henry Foo Chee TP1-1185 Chemical technology Mathematical modeling and applied analysis combine the strengths of applied mathematics, kinetic studies and numerical analysis to derive, analyze and solve mathematical models of complex problems. These techniques were used in this study for solving a complex heterogeneous gas-solid reaction for the removal of sulfur dioxide (SO2) and nitrogen oxide (NO) in flue gas using siliceous sorbent. Generally, its complexities encompassed three level of studies; macro-, meso- and micro-scopic kinetic analysis. Model 1 was developed based on a global reaction rate between SO2 and coal fly ash/CaO/CaSO4 (dry sorbent). 2010-06 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/42064/1/Henry_Foo_Chee_Yew24.pdf Yew, Henry Foo Chee (2010) Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash. Masters thesis, Universiti Sains Malaysia.
spellingShingle TP1-1185 Chemical technology
Yew, Henry Foo Chee
Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title_full Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title_fullStr Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title_full_unstemmed Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title_short Mathematical Modeling Of Simultaneous Removal Of So2 And No Using Sorbent Synthesized From Ash
title_sort mathematical modeling of simultaneous removal of so2 and no using sorbent synthesized from ash
topic TP1-1185 Chemical technology
url http://eprints.usm.my/42064/
http://eprints.usm.my/42064/1/Henry_Foo_Chee_Yew24.pdf