This paper analyses the effects of decalcification in concentrated 6 M NH4NO3 solution on mechanical and microstructural properties of alkali-activated slag (AAS). Portland-slag cement (CEM II/A-S 42.5 N) was used as a benchmark material. Decalcification process led to a decrease in strength, both in AAS and in CEM II, and this effect was more pronounced in CEM II. The decrease in strength was explicitly related to the decrease in Ca/Si atomic ratio of C-S-H gel. A very low ratio of Ca/Si similar to 0.3 in AAS was the consequence of coexistence of C-S-H(I) gel and silica gel. During decalcification of AAS almost complete leaching of sodium and tetrahedral aluminum from C-S-H(I) gel also took place. AAS showed significantly higher resistance...
© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated p...
This paper presents some recent research on the microstructural development during alkaline activati...
The development of environmentally friendly alkaline-activated materials (AAMs) holds promise, as AA...
The resistance of alkali-activated materials (AAMs) to degradation processes, particularly the decal...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
The effect of several factors on the strength of alkali activated slags has been investigated. The m...
This masters thesis deals with influence of cement bypass kiln dust on physico-mechanical properties...
As a novel low carbon cementitious material, alkali-activated slag (AAS) attracted many researchers’...
This paper reports the results of an investigation on concrete that incorporated alkali-activated sl...
This paper summarizes the advantageous and disadvantageous properties of alkali-activated slag cemen...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Alkali-activated materials are produced by chemically polymerizing the aluminosilicate materials usi...
This paper presents the influence of shrinkage-reducing (SHR) and superplasticizing and set-retardin...
Sodium silicate-activated slag often gives high early strength but sets too rapidly. Commercial reta...
© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated p...
This paper presents some recent research on the microstructural development during alkaline activati...
The development of environmentally friendly alkaline-activated materials (AAMs) holds promise, as AA...
The resistance of alkali-activated materials (AAMs) to degradation processes, particularly the decal...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
The effect of several factors on the strength of alkali activated slags has been investigated. The m...
This masters thesis deals with influence of cement bypass kiln dust on physico-mechanical properties...
As a novel low carbon cementitious material, alkali-activated slag (AAS) attracted many researchers’...
This paper reports the results of an investigation on concrete that incorporated alkali-activated sl...
This paper summarizes the advantageous and disadvantageous properties of alkali-activated slag cemen...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Alkali-activated materials are produced by chemically polymerizing the aluminosilicate materials usi...
This paper presents the influence of shrinkage-reducing (SHR) and superplasticizing and set-retardin...
Sodium silicate-activated slag often gives high early strength but sets too rapidly. Commercial reta...
© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated p...
This paper presents some recent research on the microstructural development during alkaline activati...
The development of environmentally friendly alkaline-activated materials (AAMs) holds promise, as AA...