Kinetics of mullite formation from kaolinite and boehmite
The excellent electrical, thermal and mechanical properties, and good stability of mullite made it a candidate material to produce ceramics for advanced applications such as catalyst supports, filters, optical devices, heat exchangers and electronic packaging. In this work, monolithic mullite was sy...
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iium-509042017-01-05T03:51:37Z http://irep.iium.edu.my/50904/ Kinetics of mullite formation from kaolinite and boehmite Heraiz, M Sahnoune, F Hrairi, Meftah Saheb, Nouari Ouali, A QD Chemistry TA401 Materials of engineering and construction The excellent electrical, thermal and mechanical properties, and good stability of mullite made it a candidate material to produce ceramics for advanced applications such as catalyst supports, filters, optical devices, heat exchangers and electronic packaging. In this work, monolithic mullite was synthesized from kaolinite and boehmite and the kinetics of its formation was investigated using dilamometry. The activation energies for the transformation of kaolinite to metakaolinite, transformation of metakaolinite to spinel, and transformation of the kaolinite-boehmite powder to mullite were evaluated through non-isothermal treatment following the Kissinger and Ozawa equations. The growth morphology parameters were evaluated for the transformation of metakaolinite to spinel, and for the transformation of the spinel to mullite. Taylor & Francis Group, LLC 2016 Article PeerReviewed application/pdf en http://irep.iium.edu.my/50904/1/Kinetics_of_mullite_formation_from_kaolinite_and__boehmite.pdf application/pdf en http://irep.iium.edu.my/50904/4/50904-Kinetics_of_mullite_formation_from_kaolinite_and_boehmite_SCOPUS.pdf Heraiz, M and Sahnoune, F and Hrairi, Meftah and Saheb, Nouari and Ouali, A (2016) Kinetics of mullite formation from kaolinite and boehmite. Molecular Crystals and Liquid Crystals, 628 (1). pp. 55-64. ISSN 1542-1406 E-ISSN 1563-5287 http://www.tandfonline.com/loi/gmcl20 10.1080/15421406.2015.1137113 |
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QD Chemistry TA401 Materials of engineering and construction Heraiz, M Sahnoune, F Hrairi, Meftah Saheb, Nouari Ouali, A Kinetics of mullite formation from kaolinite and boehmite |
description |
The excellent electrical, thermal and mechanical properties, and good stability of mullite made it a candidate material to produce ceramics for advanced applications such as catalyst supports, filters, optical devices, heat exchangers and electronic packaging. In this work, monolithic mullite was synthesized from kaolinite and boehmite and the kinetics of its formation was investigated using dilamometry. The activation energies for the transformation of kaolinite to metakaolinite, transformation of metakaolinite to spinel, and transformation of the kaolinite-boehmite powder to mullite were evaluated through non-isothermal treatment
following the Kissinger and Ozawa equations. The growth morphology parameters were evaluated for the transformation of metakaolinite to spinel, and for the transformation of the spinel to mullite. |
format |
Article |
author |
Heraiz, M Sahnoune, F Hrairi, Meftah Saheb, Nouari Ouali, A |
author_facet |
Heraiz, M Sahnoune, F Hrairi, Meftah Saheb, Nouari Ouali, A |
author_sort |
Heraiz, M |
title |
Kinetics of mullite formation from kaolinite and boehmite |
title_short |
Kinetics of mullite formation from kaolinite and boehmite |
title_full |
Kinetics of mullite formation from kaolinite and boehmite |
title_fullStr |
Kinetics of mullite formation from kaolinite and boehmite |
title_full_unstemmed |
Kinetics of mullite formation from kaolinite and boehmite |
title_sort |
kinetics of mullite formation from kaolinite and boehmite |
publisher |
Taylor & Francis Group, LLC |
publishDate |
2016 |
url |
http://irep.iium.edu.my/50904/ http://irep.iium.edu.my/50904/ http://irep.iium.edu.my/50904/ http://irep.iium.edu.my/50904/1/Kinetics_of_mullite_formation_from_kaolinite_and__boehmite.pdf http://irep.iium.edu.my/50904/4/50904-Kinetics_of_mullite_formation_from_kaolinite_and_boehmite_SCOPUS.pdf |
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2023-09-18T21:12:02Z |
last_indexed |
2023-09-18T21:12:02Z |
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1777411316707753984 |