Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste
This study delineates activation of palm oil fuel ash (POFA) by a combination of sodium silicate and sodium hydroxide at 60 °C to be used as a geopolymer binder. Qualitative observations as well as compressive strength were recorded to assess the viability of POFA utilization. Also, XRD, SEM/EDX, DS...
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my.upm.eprints.367592016-01-26T01:00:08Z http://psasir.upm.edu.my/id/eprint/36759/ Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste Salih, Moslih Amer Abang Ali, Abang Abdullah Farzadnia, Nima This study delineates activation of palm oil fuel ash (POFA) by a combination of sodium silicate and sodium hydroxide at 60 °C to be used as a geopolymer binder. Qualitative observations as well as compressive strength were recorded to assess the viability of POFA utilization. Also, XRD, SEM/EDX, DSC, FTIR tests were conducted to investigate underlying mechanisms of geopolymerization. The post-test observations revealed that activation of POFA is applicable and compressive strength of up to 32.48 MPa at the age of 28 days was achieved. Chemical tests indicated that formation of calcium silicate hydrate was the dominant cause of geopolymerization. Elsevier 2014-08 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/36759/1/Characterization%20of%20mechanical%20and%20microstructural%20properties%20of%20palm%20oil%20fuel%20ash%20geopolymer%20cement%20paste.pdf Salih, Moslih Amer and Abang Ali, Abang Abdullah and Farzadnia, Nima (2014) Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste. Construction and Building Materials, 65. pp. 592-603. ISSN 0950-0618 10.1016/j.conbuildmat.2014.05.031 |
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This study delineates activation of palm oil fuel ash (POFA) by a combination of sodium silicate and sodium hydroxide at 60 °C to be used as a geopolymer binder. Qualitative observations as well as compressive strength were recorded to assess the viability of POFA utilization. Also, XRD, SEM/EDX, DSC, FTIR tests were conducted to investigate underlying mechanisms of geopolymerization. The post-test observations revealed that activation of POFA is applicable and compressive strength of up to 32.48 MPa at the age of 28 days was achieved. Chemical tests indicated that formation of calcium silicate hydrate was the dominant cause of geopolymerization. |
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Article |
author |
Salih, Moslih Amer Abang Ali, Abang Abdullah Farzadnia, Nima |
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Salih, Moslih Amer Abang Ali, Abang Abdullah Farzadnia, Nima Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
author_facet |
Salih, Moslih Amer Abang Ali, Abang Abdullah Farzadnia, Nima |
author_sort |
Salih, Moslih Amer |
title |
Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
title_short |
Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
title_full |
Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
title_fullStr |
Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
title_full_unstemmed |
Characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
title_sort |
characterization of mechanical and microstructural properties of palm oil fuel ash geopolymer cement paste |
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Elsevier |
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2014 |
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http://psasir.upm.edu.my/id/eprint/36759/1/Characterization%20of%20mechanical%20and%20microstructural%20properties%20of%20palm%20oil%20fuel%20ash%20geopolymer%20cement%20paste.pdf http://psasir.upm.edu.my/id/eprint/36759/ |
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