A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide

In this work, the random pore model was modified for a general concentration dependency and also bulk flow effect, in order to predict the carbonation reaction of calcium oxide with carbon dioxide. This reaction is one of the main methods for carbon dioxide capture from industrial flue gase...

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Main Authors: Nouri Seyed Mohammad Mahdi, Ebrahim Habib Ale, Nejad Bahram Naser
Format: Article
Language:English
Published: Association of Chemical Engineers of Serbia 2015-01-01
Series:Hemijska Industrija
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400011N.pdf
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spelling doaj-dcf8c20a0a6449f283cc384320a47a772020-11-24T23:48:07ZengAssociation of Chemical Engineers of SerbiaHemijska Industrija 0367-598X2217-74262015-01-0169220921710.2298/HEMIND131116011N0367-598X1400011NA modified random pore model for carbonation reaction of calcium oxide with carbon dioxideNouri Seyed Mohammad Mahdi0Ebrahim Habib Ale1Nejad Bahram Naser2Chemical Engineering Department, Petrochemical Centre of Excellence, Amirkabir University of Technology, Tehran, IranChemical Engineering Department, Petrochemical Centre of Excellence, Amirkabir University of Technology, Tehran, IranChemical Engineering Department, Petrochemical Centre of Excellence, Amirkabir University of Technology, Tehran, IranIn this work, the random pore model was modified for a general concentration dependency and also bulk flow effect, in order to predict the carbonation reaction of calcium oxide with carbon dioxide. This reaction is one of the main methods for carbon dioxide capture from industrial flue gases. Different kinetic rate concentration functions were tested with the various literature experimental data for finding the best reaction constants and rate functions. Moreover, an exponential function for the diffusion of carbon dioxide through the product layer was proposed from the whole experimental conversion-time profiles.http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400011N.pdfrandom pore modelcalcium oxidecarbon dioxidecarbonation reaction
collection DOAJ
language English
format Article
sources DOAJ
author Nouri Seyed Mohammad Mahdi
Ebrahim Habib Ale
Nejad Bahram Naser
spellingShingle Nouri Seyed Mohammad Mahdi
Ebrahim Habib Ale
Nejad Bahram Naser
A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
Hemijska Industrija
random pore model
calcium oxide
carbon dioxide
carbonation reaction
author_facet Nouri Seyed Mohammad Mahdi
Ebrahim Habib Ale
Nejad Bahram Naser
author_sort Nouri Seyed Mohammad Mahdi
title A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
title_short A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
title_full A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
title_fullStr A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
title_full_unstemmed A modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
title_sort modified random pore model for carbonation reaction of calcium oxide with carbon dioxide
publisher Association of Chemical Engineers of Serbia
series Hemijska Industrija
issn 0367-598X
2217-7426
publishDate 2015-01-01
description In this work, the random pore model was modified for a general concentration dependency and also bulk flow effect, in order to predict the carbonation reaction of calcium oxide with carbon dioxide. This reaction is one of the main methods for carbon dioxide capture from industrial flue gases. Different kinetic rate concentration functions were tested with the various literature experimental data for finding the best reaction constants and rate functions. Moreover, an exponential function for the diffusion of carbon dioxide through the product layer was proposed from the whole experimental conversion-time profiles.
topic random pore model
calcium oxide
carbon dioxide
carbonation reaction
url http://www.doiserbia.nb.rs/img/doi/0367-598X/2015/0367-598X1400011N.pdf
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