The reaction kinetics of four commercial ground granulated blast furnace slags with varying percentages of MgO (6 to 14 wt.%), activated with four different doses of sodium metasilicate, were evaluated using isothermal calorimetry. The reaction kinetics were strongly dependent on the dose of the alkaline activator used, and the chemical and physical properties of the slag. When using low concentrations of sodium metasilicate as an activator, the MgO content in the slag influences the kinetics of the reaction, while the CaO content plays a more significant role when the concentration of metasilicate is increased. This study elucidated a close relationship between the dose of the alkali-activator and the chemistry of the slag used, although i...
In this study, concretes and pastes were produced from a high magnesium oxide (MgO) ground granulate...
Slag is activated with alkali-silicate solutions made with nano-silica and waterglass. The reaction ...
The structural evolution of a sodium carbonate activated slag cement blended with varying quantities...
The reaction kinetics of four commercial ground granulated blast furnace slags with varying percenta...
This article belongs to the Special Issue Sustainable Cementitious Materials for the Construction In...
In this study, Na2CO3-activated slag cements were produced from four different blast furnace slags, ...
The utilisation of near-neutral salts as activators to produce alkali-activated slag cements offers ...
AbstractIn this study, Na2CO3-activated slag cements were produced from four different blast furnace...
Hydration kinetics and products of MgO-activated slag are investigated by employing multiple analyti...
This study established the fundamental relationships between slag chemistry and reaction kinetics of...
In this study, the effect of sodium sulfate content and curing duration (from fresh paste up to 18 m...
An alkali-activated slag cement produced with a blend of sodium carbonate/sodium silicate activator ...
The study focuses on developing a detailed understanding of microstructure and mechanical behaviour ...
The effect of limestone replacement in the reaction and phase assemblage evolution of two sodium sul...
This paper evaluates the slag characteristics on the reaction kinetics, reaction products and mechan...
In this study, concretes and pastes were produced from a high magnesium oxide (MgO) ground granulate...
Slag is activated with alkali-silicate solutions made with nano-silica and waterglass. The reaction ...
The structural evolution of a sodium carbonate activated slag cement blended with varying quantities...
The reaction kinetics of four commercial ground granulated blast furnace slags with varying percenta...
This article belongs to the Special Issue Sustainable Cementitious Materials for the Construction In...
In this study, Na2CO3-activated slag cements were produced from four different blast furnace slags, ...
The utilisation of near-neutral salts as activators to produce alkali-activated slag cements offers ...
AbstractIn this study, Na2CO3-activated slag cements were produced from four different blast furnace...
Hydration kinetics and products of MgO-activated slag are investigated by employing multiple analyti...
This study established the fundamental relationships between slag chemistry and reaction kinetics of...
In this study, the effect of sodium sulfate content and curing duration (from fresh paste up to 18 m...
An alkali-activated slag cement produced with a blend of sodium carbonate/sodium silicate activator ...
The study focuses on developing a detailed understanding of microstructure and mechanical behaviour ...
The effect of limestone replacement in the reaction and phase assemblage evolution of two sodium sul...
This paper evaluates the slag characteristics on the reaction kinetics, reaction products and mechan...
In this study, concretes and pastes were produced from a high magnesium oxide (MgO) ground granulate...
Slag is activated with alkali-silicate solutions made with nano-silica and waterglass. The reaction ...
The structural evolution of a sodium carbonate activated slag cement blended with varying quantities...