Due to its low hydraulic reactivity, ladle slag is currently underutilized with nearly 80% of annual generation is either landfilled or dumped. This work investigates the joint activation of LS with Class F fly ash, and the impact of ladle slag on fly ash geopolymer with the focus on activation, hydrates assemblage, conversion process, and thermal behavior. Results reveal that the unique reaction process of ladle slag in alkali activation system shows a positive influence on fly ash geopolymers. Within an alkaline system rich in soluble Si, the initially hydrated CAH phases transform into C-A-S-H, which not only hinders the conversion and enhances the mechanical strength but also retains the geopolymerization. The hybrid geopolymer system e...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...
AbstractGeopolymer has been synthesized by the activation of blastfurnace steel slag (GGBFS) using 6...
Activated Slag (AAS) and Fly Ash (FA) based geopolymer concrete a new blended alkali-activated concr...
Due to its low hydraulic reactivity, ladle slag is currently underutilized with nearly 80% of annual...
As a promising alternative to alkali-activated fly ash (AAF) for high temperature application, the d...
The gel compatibility in calcium contained geopolymers remains a controversial topic. This work aims...
In recent years, the construction industry has striven to promote environmentally friendly materials...
This paper concentrates on valorization of the fly ash originating from thermal power plant by alkal...
This article reports the influence of high alkaline activator content on the compressive strength an...
Class F Fly ash-based geopolymers are prone to various high-temperature phenomena, such as cracking,...
This paper presents the effects of various slag contents on the residual compressive strength and ph...
Poor reactivity of fly ash (FA) in alkali activation process can be improved either by mechanical ac...
The high-temperature behavior of alkali-activated fly ash (AAF) geopolymers is evaluated. The physic...
AbstractPoor reactivity of fly ash (FA) in alkali activation process can be improved either by mecha...
The advent of modern aluminosilicate binders has resulted in practical uses for fly ash, which belon...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...
AbstractGeopolymer has been synthesized by the activation of blastfurnace steel slag (GGBFS) using 6...
Activated Slag (AAS) and Fly Ash (FA) based geopolymer concrete a new blended alkali-activated concr...
Due to its low hydraulic reactivity, ladle slag is currently underutilized with nearly 80% of annual...
As a promising alternative to alkali-activated fly ash (AAF) for high temperature application, the d...
The gel compatibility in calcium contained geopolymers remains a controversial topic. This work aims...
In recent years, the construction industry has striven to promote environmentally friendly materials...
This paper concentrates on valorization of the fly ash originating from thermal power plant by alkal...
This article reports the influence of high alkaline activator content on the compressive strength an...
Class F Fly ash-based geopolymers are prone to various high-temperature phenomena, such as cracking,...
This paper presents the effects of various slag contents on the residual compressive strength and ph...
Poor reactivity of fly ash (FA) in alkali activation process can be improved either by mechanical ac...
The high-temperature behavior of alkali-activated fly ash (AAF) geopolymers is evaluated. The physic...
AbstractPoor reactivity of fly ash (FA) in alkali activation process can be improved either by mecha...
The advent of modern aluminosilicate binders has resulted in practical uses for fly ash, which belon...
In this research article engineering properties of solely ground granulated blast furnace (GGBS) sla...
AbstractGeopolymer has been synthesized by the activation of blastfurnace steel slag (GGBFS) using 6...
Activated Slag (AAS) and Fly Ash (FA) based geopolymer concrete a new blended alkali-activated concr...