This paper investigates the effect of calcium-rich compounds on setting time and compressive strength development of alkali-activated fly ash (FA) pastes. Three calcium-rich compounds viz., Portland cement (PC), calcium hydroxide (CH) and calcium oxide (CaO) were used as additives to replace FA at the dosages of 5, 10, and 15% by weight basis. Sodium hydroxide and sodium silicate solutions were used as alkali activator liquids in all mixtures. Alkali activator liquid/solid binder (FA and calcium-rich compound) ratio of 0.60, sodium silicate-to-sodium hydroxide ratio of 2.0 and curing at ambient temperature (25 °C) were used for all mixes. Test results showed that the setting time and compressive strength of alkali-activated FA depended on t...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...
The roles of temperature and curing periods on product formation and strength gain in alkali activat...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
The effect of the water to fly ash (W/FA), alkali activators to fly ash (Alk/FA), and curing regimes...
The effect of using commercial-grade calcium sulfate (CS) in alkali-activated high-calcium fly ash (...
The variation of the raw materials is critical for the wide application of alkali-activated fly ash/...
The development of environmentally friendly alkaline-activated materials (AAMs) holds promise, as AA...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The compressive strength achieved in alkali-activated low-calcium fly ash depends on the total react...
Abstract: The development of alkali-activated binders seems to present a greener alternative to OPC....
This paper presents the mechanical properties of alkali activated concrete (AAC) cured at 70°C for 2...
Fly ashes use to be heterogeneous materials as a function of the mineral origin of the coal burned i...
The optimum curing temperatures and durations for alkali-activated mortar (AAM) synthesized using fi...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...
The roles of temperature and curing periods on product formation and strength gain in alkali activat...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
The effect of the water to fly ash (W/FA), alkali activators to fly ash (Alk/FA), and curing regimes...
The effect of using commercial-grade calcium sulfate (CS) in alkali-activated high-calcium fly ash (...
The variation of the raw materials is critical for the wide application of alkali-activated fly ash/...
The development of environmentally friendly alkaline-activated materials (AAMs) holds promise, as AA...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The compressive strength achieved in alkali-activated low-calcium fly ash depends on the total react...
Abstract: The development of alkali-activated binders seems to present a greener alternative to OPC....
This paper presents the mechanical properties of alkali activated concrete (AAC) cured at 70°C for 2...
Fly ashes use to be heterogeneous materials as a function of the mineral origin of the coal burned i...
The optimum curing temperatures and durations for alkali-activated mortar (AAM) synthesized using fi...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...
The roles of temperature and curing periods on product formation and strength gain in alkali activat...
Alkali activated fly ash/slag (AAFS), a newly evolved type of alkali-activated cements (AACs), is he...