Alkali-etched heated clay: Microstructure and physical/mechanical properties
The microstructure of alkali-etched heated kaolinitic-illitic clay, which was cured in wet atmosphere at different temperatures and times, was investigated by using X-ray diffraction, Fourier-transform infrared spectroscopy, thermal analysis and scanning electron microscope. The flexural strength, d...
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2016-09-01
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doaj-ee4c4102a19b45eea4c2677e4bdd1e9e2021-05-02T05:33:27ZengTaylor & Francis GroupJournal of Asian Ceramic Societies2187-07642016-09-014323424210.1016/j.jascer.2016.07.001Alkali-etched heated clay: Microstructure and physical/mechanical propertiesKenza El HafidMohamed HajjajiThe microstructure of alkali-etched heated kaolinitic-illitic clay, which was cured in wet atmosphere at different temperatures and times, was investigated by using X-ray diffraction, Fourier-transform infrared spectroscopy, thermal analysis and scanning electron microscope. The flexural strength, density and water absorption of the cured samples were correlated to curing time, ageing temperature and alkaline solution concentration by using the response surface methodology. It was found that hydro-sodalite and zeolite P were essentially formed from metakaolinite, the products of chlorite and illite. The geopolymer was almost absent mainly because of excessive hydration. The assemblage of neoformed zeolites differed partially from that predicted using the stability diagram Na2O–SiO2–Al2O3. Polynomial models described well the change of the physical/mechanical properties against the experimental factors. Based on the results of the models, the increase of any factor among the studied ones had an adverse effect on the mechanical strength and contributed to the increase of water absorption. The weight of the effect of the factors on density was less significant. These results were discussed in relation to the microstructure investigation.http://www.sciencedirect.com/science/article/pii/S2187076416300537Cured heated-clayAlkali-activationGeopolymerMicrostructurePhysical/mechanical properties |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kenza El Hafid Mohamed Hajjaji |
spellingShingle |
Kenza El Hafid Mohamed Hajjaji Alkali-etched heated clay: Microstructure and physical/mechanical properties Journal of Asian Ceramic Societies Cured heated-clay Alkali-activation Geopolymer Microstructure Physical/mechanical properties |
author_facet |
Kenza El Hafid Mohamed Hajjaji |
author_sort |
Kenza El Hafid |
title |
Alkali-etched heated clay: Microstructure and physical/mechanical properties |
title_short |
Alkali-etched heated clay: Microstructure and physical/mechanical properties |
title_full |
Alkali-etched heated clay: Microstructure and physical/mechanical properties |
title_fullStr |
Alkali-etched heated clay: Microstructure and physical/mechanical properties |
title_full_unstemmed |
Alkali-etched heated clay: Microstructure and physical/mechanical properties |
title_sort |
alkali-etched heated clay: microstructure and physical/mechanical properties |
publisher |
Taylor & Francis Group |
series |
Journal of Asian Ceramic Societies |
issn |
2187-0764 |
publishDate |
2016-09-01 |
description |
The microstructure of alkali-etched heated kaolinitic-illitic clay, which was cured in wet atmosphere at different temperatures and times, was investigated by using X-ray diffraction, Fourier-transform infrared spectroscopy, thermal analysis and scanning electron microscope. The flexural strength, density and water absorption of the cured samples were correlated to curing time, ageing temperature and alkaline solution concentration by using the response surface methodology. It was found that hydro-sodalite and zeolite P were essentially formed from metakaolinite, the products of chlorite and illite. The geopolymer was almost absent mainly because of excessive hydration. The assemblage of neoformed zeolites differed partially from that predicted using the stability diagram Na2O–SiO2–Al2O3. Polynomial models described well the change of the physical/mechanical properties against the experimental factors. Based on the results of the models, the increase of any factor among the studied ones had an adverse effect on the mechanical strength and contributed to the increase of water absorption. The weight of the effect of the factors on density was less significant. These results were discussed in relation to the microstructure investigation. |
topic |
Cured heated-clay Alkali-activation Geopolymer Microstructure Physical/mechanical properties |
url |
http://www.sciencedirect.com/science/article/pii/S2187076416300537 |
work_keys_str_mv |
AT kenzaelhafid alkalietchedheatedclaymicrostructureandphysicalmechanicalproperties AT mohamedhajjaji alkalietchedheatedclaymicrostructureandphysicalmechanicalproperties |
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1721495036009381888 |