This study presents the strength properties of alkali activated Ground Granulated Blast Furnace Slag (GGBFS)/Fly Ash (FA) blend mortars prepared with sodium meta-silicate and, sodium hydroxide-silica fume combination mixture. The GGBFS/FA ratios were arranged at (100/0, 80/20, 60/40, 40/60, 20/80, 0/100). Water to "GGBFS+FA" ratio was kept constant at 0.5. Na concentration ratio to "GGBFS+FA" was kept constant at 6%. These ratios were in mass basis. Three different mixture parameters were used. In the first series of mixture, only sodium meta-silicate was used as activator. In second and third series, sodium hydroxide and silica fume combination was used as activator. Sodium hydroxide and silica fume was mixed with water and used directly i...
This paper presents a summary of experimental work that has been conducted to compare the strength o...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The cement industry accounts for about 7% of all CO2 emissions caused by humans. Therefore, it is ne...
This study presents the strength properties of alkali activated Ground Granulated Blast Furnace Slag...
The alkali activation of mortar blends containing Ground Granulated Blast Furnace Slag and Fly Ash, ...
ABSTRACT Alkali activated mortars made of class F fly ash and blast furnace slag were cast, in order...
The aim of the work reported in this paper is to compare the strength of two different alkali activa...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
This paper investigated physical mechanical and microstructural properties of alkali-activated binde...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
Mineral geopolymer binders can be an attractive and more sustainable alternative to traditional Port...
In this study, the effect of dosage and modulus of activator on the strength of alkali activated sla...
The implementation of sustainable development in civil engineering society has led to the use of new...
The compressive strength of fly ash-based geopolymer mortar (FBGM) made from five different sources ...
This paper presents the results of an experimental study performed to investigate the effect of acti...
This paper presents a summary of experimental work that has been conducted to compare the strength o...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The cement industry accounts for about 7% of all CO2 emissions caused by humans. Therefore, it is ne...
This study presents the strength properties of alkali activated Ground Granulated Blast Furnace Slag...
The alkali activation of mortar blends containing Ground Granulated Blast Furnace Slag and Fly Ash, ...
ABSTRACT Alkali activated mortars made of class F fly ash and blast furnace slag were cast, in order...
The aim of the work reported in this paper is to compare the strength of two different alkali activa...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
This paper investigated physical mechanical and microstructural properties of alkali-activated binde...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
Mineral geopolymer binders can be an attractive and more sustainable alternative to traditional Port...
In this study, the effect of dosage and modulus of activator on the strength of alkali activated sla...
The implementation of sustainable development in civil engineering society has led to the use of new...
The compressive strength of fly ash-based geopolymer mortar (FBGM) made from five different sources ...
This paper presents the results of an experimental study performed to investigate the effect of acti...
This paper presents a summary of experimental work that has been conducted to compare the strength o...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The cement industry accounts for about 7% of all CO2 emissions caused by humans. Therefore, it is ne...