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BULLETIN OF THE CHINESE CERAMIC SOCIETY ›› 2026, Vol. 45 ›› Issue (2): 482-489.DOI: 10.16552/j.cnki.issn1001-1625.2025.0772

• Cement and Concrete • Previous Articles     Next Articles

A New Mechanism for Inhibiting Alkali Efflorescence Dominated by Ettringite

LI Lang1(), ZHANG Yuwei1,2, GAO Yuhui1,2, LIU Yue1,2, CHENG Yan1,2, ZHENG Weiguo1,2()   

  1. 1. Guangdong Wenke Green Technology Co. ,Ltd. ,Foshan 528300,China
    2. Guangdong Engineering Research Center of Landscape Architecture and Ecological Restoration,Shenzhen 518000,China
  • Received:2025-07-31 Revised:2025-09-10 Online:2026-02-20 Published:2026-03-09
  • Contact: ZHENG Weiguo

Abstract:

Efflorescence poses a critical challenge to the stability of cement-based decorative materials. Traditional methods have limitations such as low efficiency and strength damage. This study proposed and verified a new hypothesis: through the regulation of exogenous Ca2+, ettringite (AFt) can be transformed from an efflorescence promoting phase to an efficient efflorescence inhibition phase. Using sulphoaluminate cement (SAC) as the matrix and adding CaCl2 as calcium sources, the efflorescence inhibition mechanism of AFt was systematically studied by multi-scale characterization methods such as XRD, SEM, TG-DSC and MIP. The results show that the optical density (OD) value of the SAC sample with 10% CaCl2 (mass fraction) admixture is reduced by 39.2% compared to the sample without CaCl2, indicating that it can significantly reduce the degree of efflorescence. The core mechanism lies in: 1) AFt crystal structure (3CaO·Al2O3·3CaSO4·32H2O) fixes free Ca2+, reducing the source of migratory ions. 2) AFt crystals can bind a large amount of crystalline water, reducing the carrier of ion migration. 3) A large amount of AFt interlaced growth forms a dense skeletonon, total porosity as low as 2.78%, blocking the ion migration channels. The three work together to achieve the "fixed ion source, bound migration carrier, and blocking migration channel" alkali inhibition effect. This study reveals the new function of AFt in active alkali inhibition and provides a new idea for the design of long-lasting anti-alkali efflorescence cement-based decorative materials.

Key words: CaCl2, Ca(NO32, sulphoaluminate cement, ettringite, efflorescence inhibition, ion immobilization, channel blocking

CLC Number: