Modified binder composition for improved carbonation resistance of activated low-kaolinite clay-blended cementitious materials
Övrigt konferensbidrag, 2026

Low-kaolinite calcined clays are promising supplementary cementitious materials owing to their wide availability. However, compared with high-kaolinite systems, their lower reactive alumina content results in a different hydrate assemblage, which may influence carbonation resistance. In this study, a hydrate assemblage engineering approach is proposed as a strategy to improve carbonation resistance of low-kaolinite clay-blended binders. A reference binder containing 30 wt.% activated low-kaolinite clay was first characterized using thermogravimetric analysis and 29Si MAS NMR. The results showed that the binder contained lower portlandite and limited AFm buffering compared with OPC, leading to earlier carbonation of the C-A-S-H phase. Thermodynamic modelling (GEMS) was then used to redesign the binder composition through the addition of calcium hydroxide and limestone to promote the formation of carbonate-bearing AFm phases. The sulfate content was subsequently optimized using isothermal calorimetry. The proposed methodology provides a rational framework for hydrate assemblage engineering of low-kaolinite clay-blended binders as a strategy towards improving carbonation resistance.

Supplementary cementitious materials

Carbonation

Mixed-layer clay

Binder design

Författare

Sahar Iftikhar

Chalmers, Arkitektur och samhällsbyggnadsteknik, Konstruktionsteknik

Amrita Hazarika

Chalmers, Arkitektur och samhällsbyggnadsteknik, Byggnadsteknologi

Arezou Baba Ahmadi

Chalmers, Arkitektur och samhällsbyggnadsteknik, Konstruktionsteknik

80th RILEM Week 2026 in conjunction with the 3rd ACCTA International Conference on Advances in Climate-Friendly Construction Technology in Africa
Nairobi, Kenya,

Ämneskategorier (SSIF 2025)

Byggnadsmaterial

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Senast uppdaterat

2026-10-04