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Liu, C. (author), Liang, X. (author), Chen, Y. (author), Li, Z. (author), Ye, G. (author)
In this study, the impacts of tap water immersion on the pore solution, phase assemblages, gel chemistry and structure, and pore structure of alkali-activated slag (AAS) pastes were studied. AAS degrades under such condition and the potential mechanisms can be concluded as lower reaction rates, gel decomposition and carbonation. The leaching...
journal article 2023
document
Gluth, Gregor J.G. (author), Arbi Ghanmi, K. (author), Bernal, Susan A. (author), Bondar, Dali (author), Castel, Arnaud (author), Chithiraputhiran, Sundararaman (author), Dehghan, Alireza (author), Dombrowski-Daube, Katja (author), Dubey, Ashish (author), Ducman, Vilma (author), Peterson, Karl (author), Pipilikaki, Penny (author), Valcke, Siska L.A. (author), Ye, G. (author), Zuo, Y. (author), Provis, John L. (author)
Many standardised durability testing methods have been developed for Portland cement-based concretes, but require validation to determine whether they are also applicable to alkali-activated materials. To address this question, RILEM TC 247-DTA ‘Durability Testing of Alkali-Activated Materials’ carried out round robin testing of carbonation...
journal article 2020
document
Nedeljković, Marija (author), Ghiassi, B. (author), van der Laan, Sieger (author), Li, Z. (author), Ye, G. (author)
The effect of curing conditions (sealed and unsealed) on the pore solution composition and carbonation resistance of different binary alkali-activated fly ash (FA) and ground granulated blast furnace slag (GBFS) pastes is investigated in this study. The studied mixtures were with FA/GBFS ratios of 100:0, 70:30; 50:50, 30:70, 0:100. Ordinary...
journal article 2019
document
Nedeljković, Marija (author), Zuo, Y. (author), Arbi, Kamel (author), Ye, G. (author)
In this paper, carbonation resistance of alkali-activated slag (AAS) pastes exposed to natural and accelerated conditions up to 1 year was investigated. Two aspects of carbonation mechanism were evaluated. The first was the potential carbonation of the main binding phases in finely powdered AAS pastes. The second was the reactivity and...
journal article 2018
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