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Effect of Tartaric Acid on Hydration of a Sodium-Metasilicate-Activated Blend of Calcium Aluminate Cement and Fly Ash

Cited 16 time in Web of Science Cited 21 time in Scopus
Authors

Pyatina, Tatiana; Sugama, Toshifumi; Moon, Juhyuk; James, Simon

Issue Date
2016-06
Publisher
MDPI Open Access Publishing
Citation
Materials, Vol.9 No.6
Abstract
An alkali-activated blend of aluminum cement and class F fly ash is an attractive solution for geothermal wells where cement is exposed to significant thermal shocks and aggressive environments. Set-control additives enable the safe cement placement in a well but may compromise its mechanical properties. This work evaluates the effect of a tartaric-acid set retarder on phase composition, microstructure, and strength development of a sodium-metasilicate-activated calcium aluminate/fly ash class F blend after curing at 85 degrees C, 200 degrees C or 300 degrees C. The hardened materials were characterized with X-ray diffraction, thermogravimetric analysis, X-ray computed tomography, and combined scanning electron microscopy/energy-dispersive X-ray spectroscopy and tested for mechanical strength. With increasing temperature, a higher number of phase transitions in non-retarded specimens was found as a result of fast cement hydration. The differences in the phase compositions were also attributed to tartaric acid interactions with metal ions released by the blend in retarded samples. The retarded samples showed higher total porosity but reduced percentage of large pores (above 500 mu m) and greater compressive strength after 300 degrees C curing. Mechanical properties of the set cements were not compromised by the retarder.
URI
https://hdl.handle.net/10371/220113
DOI
https://doi.org/10.3390/ma9060422
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  • College of Engineering
  • Department of Civil & Environmental Engineering
Research Area Concrete, Mineral Carbonation, Non-captured carbon dioxide storage, 광물탄산화, 비포집 기반 이산화탄소 저장, 콘크리트

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