Effect of alkaline salts on calcium sulfoaluminate cement hydration

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Abstract

This work analyzes the effect of the presence of 5 wt.% of solid sodium salts (Na2SO4, Na2CO3, and Na2SiO3) on calcium sulfoaluminate cement (CSA) hydration, addresses hydration kinetics; 2-, 28-, and 90-d mechanical strength, and reaction product microstructure (with X-ray diffraction (XRD), and Fourier transform infrared spectroscopy, (FTIR). The findings show that the anions affect primarily the reactions involved. Ettringite and AH3, are the majority hydration products, while monosulfates are absent in all of the samples. All three salts hasten CSA hydration and raise the amount of ettringite formed. Na2SO4 induces cracking in the ≥28-d pastes due to posthardening gypsum and ettringite formation from the excess SO42– present. Anhydrite dissolves more rapidly in the presence of Na2CO3, prompting carbonation. Na2SiO3 raises compressive strength and exhibits strätlingite as one of its reaction products.

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Tambara Júnior, L. U. D., Rocha, J. C., Cheriaf, M., Padilla-Encinas, P., Fernández-Jiménez, A., & Palomo, A. (2021). Effect of alkaline salts on calcium sulfoaluminate cement hydration. Molecules, 26(7). https://doi.org/10.3390/molecules26071938

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