Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F
10.3390/ma9060422
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sg-nus-scholar.10635-1824672024-04-03T09:14:01Z Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F Pyatina, T Sugama, T Moon, J James, S CIVIL AND ENVIRONMENTAL ENGINEERING C (programming language) Calcium Calcium compounds Cement additives Compressive strength Computerized tomography Curing Fly ash Geothermal wells Hydration Mechanical properties Metal ions Metals Microstructure Phase composition Scanning electron microscopy Thermogravimetric analysis X ray diffraction X ray spectroscopy Aggressive environment Alkali activated cements Attractive solutions Calcium aluminate cement Increasing temperatures Retardation Strength development X-ray computed tomography Cements 10.3390/ma9060422 Materials 9 6 422 2020-10-31T11:33:38Z 2020-10-31T11:33:38Z 2016 Article Pyatina, T, Sugama, T, Moon, J, James, S (2016). Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F. Materials 9 (6) : 422. ScholarBank@NUS Repository. https://doi.org/10.3390/ma9060422 1996-1944 https://scholarbank.nus.edu.sg/handle/10635/182467 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ MDPI AG Unpaywall 20201031 |
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C (programming language) Calcium Calcium compounds Cement additives Compressive strength Computerized tomography Curing Fly ash Geothermal wells Hydration Mechanical properties Metal ions Metals Microstructure Phase composition Scanning electron microscopy Thermogravimetric analysis X ray diffraction X ray spectroscopy Aggressive environment Alkali activated cements Attractive solutions Calcium aluminate cement Increasing temperatures Retardation Strength development X-ray computed tomography Cements |
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C (programming language) Calcium Calcium compounds Cement additives Compressive strength Computerized tomography Curing Fly ash Geothermal wells Hydration Mechanical properties Metal ions Metals Microstructure Phase composition Scanning electron microscopy Thermogravimetric analysis X ray diffraction X ray spectroscopy Aggressive environment Alkali activated cements Attractive solutions Calcium aluminate cement Increasing temperatures Retardation Strength development X-ray computed tomography Cements Pyatina, T Sugama, T Moon, J James, S Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
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10.3390/ma9060422 |
author2 |
CIVIL AND ENVIRONMENTAL ENGINEERING |
author_facet |
CIVIL AND ENVIRONMENTAL ENGINEERING Pyatina, T Sugama, T Moon, J James, S |
format |
Article |
author |
Pyatina, T Sugama, T Moon, J James, S |
author_sort |
Pyatina, T |
title |
Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
title_short |
Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
title_full |
Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
title_fullStr |
Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
title_full_unstemmed |
Effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash F |
title_sort |
effect of tartaric acid on hydration of a sodium-metasilicate-activated blend of calcium aluminate cement and fly ash f |
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MDPI AG |
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2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/182467 |
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1795374567659667456 |