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Articles

Milestones in the analysis of alkali-activated binders

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Pages 74-84 | Received 01 Jul 2014, Accepted 20 Aug 2014, Published online: 18 Dec 2014

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Yanru Wang, Yubin Cao, Yuwei Ma, Shanshan Xiao, Jie Hu & Hao Wang. (2022) Fresh and hardened properties of alkali-activated fly ash/slag binders: effect of fly ash source, surface area, and additives. Journal of Sustainable Cement-Based Materials 11:4, pages 239-262.
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Hilal El-Hassan, Ehab Shehab & Abdelrahman Al-Sallamin. (2021) Effect of curing regime on the performance and microstructure characteristics of alkali-activated slag-fly ash blended concrete. Journal of Sustainable Cement-Based Materials 10:5, pages 289-317.
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Articles from other publishers (13)

Marianne Saba, Fateh Fakhari Tehrani, Pouria Hajikarimi & Joseph Absi. (2023) Investigation on partially replacing metakaolin with marine shell waste to produce sustainable eco-friendly geopolymer mortars. Clean Technologies and Environmental Policy.
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Jabulani Matsimbe, Megersa Dinka, David Olukanni & Innocent Musonda. (2022) Geopolymer: A Systematic Review of Methodologies. Materials 15:19, pages 6852.
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Gengjie Zhu, Wancheng Zhu, Zhaojun Qi, Baoxu Yan, Haiqiang Jiang & Chen Hou. (2022) One-part alkali-activated slag binder for cemented fine tailings backfill: proportion optimization and properties evaluation. Environmental Science and Pollution Research 29:49, pages 73865-73877.
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Giovani Jordi Bruschi, Carolina Pereira dos Santos, Suéllen Tonatto Ferrazzo, Mariana Tonini de Araújo & Nilo Cesar Consoli. (2021) Parameters controlling loss of mass and stiffness degradation of ‘green’ stabilised tailings. Proceedings of the Institution of Civil Engineers - Geotechnical Engineering, pages 1-9.
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N. N. Klimenko, N. Yu. Mikhailenko, L. M. Delitsin & V. N. Sigaev. (2020) Effect of Particle Size of Quartz Sand Filler on Microstructure and Strength of Alkali-Activated Slag-Based Materials. Arabian Journal for Science and Engineering 46:5, pages 4337-4352.
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Lidija Korat & Vilma Ducman. (2020) Characterization of Fly Ash Alkali Activated Foams Obtained Using Sodium Perborate Monohydrate as a Foaming Agent at Room and Elevated Temperatures. Frontiers in Materials 7.
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Pedro Perez-Cortes & J.I. Escalante García. (2020) Design and optimization of alkaline binders of limestone-metakaolin – A comparison of strength, microstructure and sustainability with portland cement and geopolymers. Journal of Cleaner Production, pages 123118.
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Katalin Orosz, Abeer Humad, Hans Hedlund & Andrzej Cwirzen. (2019) Autogenous Deformation of Alkali-Activated Blast Furnace Slag Concrete Subjected to Variable Curing Temperatures. Advances in Civil Engineering 2019, pages 1-8.
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Ruizhe Si, Shuaicheng Guo & Qingli Dai. (2018) Influence of calcium content on the atomic structure and phase formation of alkali‐activated cement binder. Journal of the American Ceramic Society 102:3, pages 1479-1494.
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Monita Olivia, Gunawan Wibisono & Edy Saputra. (2019) Early strength of various fly ash based concrete in peat environment. MATEC Web of Conferences 276, pages 01022.
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X. GaoQ. L. Yu, A. LazaroH. J. H. Brouwers. (2018) Evaluating an Eco-Olivine Nanosilica as an Alternative Silica Source in Alkali-Activated Composites. Journal of Materials in Civil Engineering 30:3.
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Agnese Attanasio, Livio Pascali, Vito Tarantino, Wanda Arena & Alessandro Largo. (2018) Alkali-Activated Mortars for Sustainable Building Solutions: Effect of Binder Composition on Technical Performance. Environments 5:3, pages 35.
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Tero Luukkonen, Zahra Abdollahnejad, Juho Yliniemi, Paivo Kinnunen & Mirja Illikainen. (2018) One-part alkali-activated materials: A review. Cement and Concrete Research 103, pages 21-34.
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