4.7 Article

Fresh properties, compressive strength and microstructure of fly ash geopolymer paste blended with iron ore tailing under thermal cycle

期刊

CONSTRUCTION AND BUILDING MATERIALS
卷 118, 期 -, 页码 76-88

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2016.05.059

关键词

Geopolymer; Fly ash; Iron ore tailing; Thermal cycle; Strength; Microstructure

资金

  1. National Natural Science Foundation of China [51502272]
  2. China Postdoctoral Science Foundation [1231512]
  3. Fundamental Research Funds for the Central Universities, China University of Geosciences (Wuhan)

向作者/读者索取更多资源

This study aims to broaden the application of iron ore tailing (JOT) in geopolymer. Fresh properties, residual strength, mass loss and microstructure evolution of geopolymer prepared by using fly ash as starting material blended with IOT and activated by sodium silicate and sodium hydroxide solutions were investigated after exposure to 3 and 7 heat-cooling thermal cycles at different target heating temperatures of 200 degrees C, 400 degrees C and 800 degrees C when fly ash was partially replaced by IOT at levels ranging from 0% to 30% with an interval of 10%; by weight. The experimental results uncover that IOT addition influences the workability and setting time of geopolymer especially when more than 20% of IOT is added. Under the effects of thermal cycles, the compressive strength decreases significantly especially after 7 thermal cycles. The loss in compressive strength increases as the cycle target temperature increases from 200 degrees C to 800 degrees C. The presence of IOT evidently improves the thermal resistance of geopolymer with the replacement level of IOT less than 30%. The reduced Ca(OH)(2) and the associated formation of additional C-S-H evidences the role of IOT in the formation of C-S-H and supports the results of the increasing compressive strength. Replacing of fly ash with 20% IOT leads to a reduction of the porosity and microcrackings which results in much denser microstructure. Surface Vickers-hardness of geopolymer has also been optimized by IOT addition regardless of exposure target temperature. (C) 2016 Elsevier Ltd. All rights reserved.

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