Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica
The present study focused on enhancing properties of unground palm oil fuel ash (UPOFA) mortars by incorporation of nanosilica (NS). To do so, 0.5–1.5% NS was admixed in each series of 10–30% UPOFA, respectively. The results revealed that incorporating NS offset the adverse effect of UPOFA on flowab...
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Elsevier
2013
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my.upm.eprints.286682015-12-07T03:43:36Z http://psasir.upm.edu.my/id/eprint/28668/ Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica Noorvand, Hossein Abang Ali, Abang Abdullah Demirboga, Ramazan Noorvand, Hassan Farzadnia, Nima The present study focused on enhancing properties of unground palm oil fuel ash (UPOFA) mortars by incorporation of nanosilica (NS). To do so, 0.5–1.5% NS was admixed in each series of 10–30% UPOFA, respectively. The results revealed that incorporating NS offset the adverse effect of UPOFA on flowability, compressive strength and water absorption of mortars. Addition of NS increased the replacement level of UPOFA up to 20% with comparable compressive strength to control sample. SEM and XRD results showed that admixing NS led to improvement in the microstructure, and pozzolanic behavior of UPOFA mixtures at 28 days. Elsevier 2013-11 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/28668/1/Physical%20and%20chemical%20characteristics%20of%20unground%20palm%20oil%20fuel%20ash%20cement%20mortars%20with%20nanosilica.pdf Noorvand, Hossein and Abang Ali, Abang Abdullah and Demirboga, Ramazan and Noorvand, Hassan and Farzadnia, Nima (2013) Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica. Construction and Building Materials, 48. pp. 1104-1113. ISSN 0950-0618 10.1016/j.conbuildmat.2013.07.070 |
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The present study focused on enhancing properties of unground palm oil fuel ash (UPOFA) mortars by incorporation of nanosilica (NS). To do so, 0.5–1.5% NS was admixed in each series of 10–30% UPOFA, respectively. The results revealed that incorporating NS offset the adverse effect of UPOFA on flowability, compressive strength and water absorption of mortars. Addition of NS increased the replacement level of UPOFA up to 20% with comparable compressive strength to control sample. SEM and XRD results showed that admixing NS led to improvement in the microstructure, and pozzolanic behavior of UPOFA mixtures at 28 days. |
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Article |
author |
Noorvand, Hossein Abang Ali, Abang Abdullah Demirboga, Ramazan Noorvand, Hassan Farzadnia, Nima |
spellingShingle |
Noorvand, Hossein Abang Ali, Abang Abdullah Demirboga, Ramazan Noorvand, Hassan Farzadnia, Nima Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
author_facet |
Noorvand, Hossein Abang Ali, Abang Abdullah Demirboga, Ramazan Noorvand, Hassan Farzadnia, Nima |
author_sort |
Noorvand, Hossein |
title |
Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
title_short |
Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
title_full |
Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
title_fullStr |
Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
title_full_unstemmed |
Physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
title_sort |
physical and chemical characteristics of unground palm oil fuel ash cement mortars with nanosilica |
publisher |
Elsevier |
publishDate |
2013 |
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http://psasir.upm.edu.my/id/eprint/28668/1/Physical%20and%20chemical%20characteristics%20of%20unground%20palm%20oil%20fuel%20ash%20cement%20mortars%20with%20nanosilica.pdf http://psasir.upm.edu.my/id/eprint/28668/ |
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