This study investigates the effects of two different Blaine fineness and three distinct curing conditions on the physico-mechanical properties of a geopolymer-ground granulated blast furnace slag (GGBFS) binder mortar activated through a combination of NaOH/NaS alkalis. By ensuring constant curing and mixing conditions, geopolymer mortar (GPM) specimens were prepared and evaluated to determine their capillary water sorption, capillarity coefficient, and change in unit weight, alongside their compressive strength and flexural strength 3, 7, 28, and 56 d after production. It was found that the capillary water sorption decreased by approximately 50% as the curing temperature of the water increased from ambient temperature to 22 °C. The coeffic...
Abstract: The effects of fines and chemical composition of three types of ground granulated blast fu...
We report the effect of metakaolin (MK) substituted granulated blast furnace slag (GBFS) on the earl...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...
This paper reports the influence of different curing temperatures, calcium content and different typ...
© 2016 Elsevier Ltd This paper reports the influence of different curing temperatures, calcium conte...
Impact of changing temperatures of curing (27, 60 and 90 °C) and types of alkaline activator solutio...
Through the process of extracting iron from iron ore, a by-product is generated known as granulated ...
Granulated Blast Furnace Slag (GBFS) is alternative sustainable raw material used for production of ...
Mineral geopolymer binders can be an attractive and more sustainable alternative to traditional Port...
This paper presents the effect of ground granulated blast-furnace slag (GGBFS) content on the alkali...
In this study, some durability properties of alkali-activated slag (geopolymer) mortars were investi...
Geopolymers are obtained by various methods in different alkaline environments by changing compositi...
This paper presents the effect of ground granulated blast-furnace slag (GGBFS) content on the alkali...
Abstract. This article reports a study about thermal stability as well as acid resistance of geopoly...
Geopolymer is an aluminosilicate compound produced as a result of inorganic polymerization. In the p...
Abstract: The effects of fines and chemical composition of three types of ground granulated blast fu...
We report the effect of metakaolin (MK) substituted granulated blast furnace slag (GBFS) on the earl...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...
This paper reports the influence of different curing temperatures, calcium content and different typ...
© 2016 Elsevier Ltd This paper reports the influence of different curing temperatures, calcium conte...
Impact of changing temperatures of curing (27, 60 and 90 °C) and types of alkaline activator solutio...
Through the process of extracting iron from iron ore, a by-product is generated known as granulated ...
Granulated Blast Furnace Slag (GBFS) is alternative sustainable raw material used for production of ...
Mineral geopolymer binders can be an attractive and more sustainable alternative to traditional Port...
This paper presents the effect of ground granulated blast-furnace slag (GGBFS) content on the alkali...
In this study, some durability properties of alkali-activated slag (geopolymer) mortars were investi...
Geopolymers are obtained by various methods in different alkaline environments by changing compositi...
This paper presents the effect of ground granulated blast-furnace slag (GGBFS) content on the alkali...
Abstract. This article reports a study about thermal stability as well as acid resistance of geopoly...
Geopolymer is an aluminosilicate compound produced as a result of inorganic polymerization. In the p...
Abstract: The effects of fines and chemical composition of three types of ground granulated blast fu...
We report the effect of metakaolin (MK) substituted granulated blast furnace slag (GBFS) on the earl...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...