4.7 Article

An efficient approach for mitigation of efflorescence in fly ash-based geopolymer mortars under high-low humidity cycles

期刊

CONSTRUCTION AND BUILDING MATERIALS
卷 317, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2021.126159

关键词

Geopolymer; Fly ash; Caltite; Efflorescence; High-low humidity cycle; Mechanism

资金

  1. Scientific Research Fund of Sichuan Province Education Department [17ZA0395]
  2. Research Support Fund of Longshan Academic Talents [18LZX609]

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By optimizing the water/cement ratio and adding specific solution, the efflorescence of fly ash-based geopolymer mortars was successfully mitigated in this study, confirming the improvement effect of the addition of trace amount of CS on efflorescence situation.
The efflorescence of fly ash-based geopolymer (FG) is a significant factor of durability, which has been widely concerned in the application of civil engineering. Fly ash based-geopolymer mortars (FGMs) were fabricated by optimizing their water/cement (w/c) ratio from 0.6 to 0.4 as well as the addition of caltite solution (CS) in this paper. The characteristics and mechanism of efflorescence under the high-low humidity cycles were identified. These free cations in FGMs migrated in the direction of surface to form carbonate (Na2Ca(CO3)(2)center dot 5H(2)O), resulting in efflorescence. The most effective way for FGMs to mitigate efflorescence from the obtained results was adding 1 wt% CS into the FGMs with the w/c ratio of 0.4. The filter membrane of alkaline stearate was formed by the reaction between CS and alkaline activator, and it adhered to the capillary to suppress migrating and leaching behavior of Na(H2O)(n)(+). Efflorescence fraction was thus decreased from 92.16% to 2.82%, and the mechanical properties were simultaneously decreased by 23.17%. Adding 3 wt% CS into FGMs with the w/c ratio of 0.5 also mitigated efflorescence, the efflorescence fraction was decreased by 18.13%. With the dosage of CS increasing to 4 wt%, the efflorescence of FGMs with the w/c ratio of 0.6 could be accelerated. The results further confirmed that the trace addition of CS could obtain the optimal result for mitigating the efflorescence of the FGMs.

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