Determination of the Basic Geotechnical Parameters of Blast-Furnace Slag from the Kremnica Region. [PDF]
Bulko R, Masarovičová S, Gago F.
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Influence of Vanadium-Titanium Slag Substitution on Properties and Microstructure of Blast Furnace Slag-Steel Slag-Desulfurization Gypsum Gel System. [PDF]
Liu J +6 more
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Evaluation of the Solidification of Radioactive Wastes Using Blast Furnace Slag as a Solidifying Agent. [PDF]
Jeon JH, Lee JH, Lee WC, Lee SW, Kim SO.
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Mechanical properties and durability of concrete with recycled air-cooled blast furnace slag aggregates. [PDF]
Mohamed OA +4 more
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Durability Considerations in Replacing Blast Furnace Slag with Low-Grade Calcined Clay and Natural Pozzolan in Quaternary Cements. [PDF]
Etcheverry JM +5 more
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Mechanistic Insights into Full Solid-Waste Activators for Enhancing the Performance of Blast Furnace Slag-Fly Ash Cementitious Composites. [PDF]
Zhang H, Li Y, Wei D, Wu X, Wang Y.
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Phase Evolution of Hybrid Alkali Sulfate-Activated Ground-Granulated Blast Furnace Slag Cements. [PDF]
Etcheverry JM +7 more
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Synergistic effects of fly ash, ground granulated blast furnace slag, and graphene oxide in low-carbon concrete: modelling, optimization, and sustainability assessment. [PDF]
Baikerikar AV +6 more
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Effect of Retarders on the Reactivity and Hardening Rate of Alkali-Activated Blast Furnace Slag Grouts. [PDF]
Souayfan F +3 more
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Effect of alkali activator and granulated blast furnace slag on the properties of lithium slag-based high-strength lightweight aggregates. [PDF]
Zhang Y, Tang Z, Zhou X, Zheng Y, Liu Z.
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