Reactivity of Class F fly ash (FA), development of strength, and structure of FA-based geopolymers, depending on the reaction conditions, were examined in this paper. The results of SEM/EDS and NMR analyses revealed that the composition of aluminosilicate gel changed during reaction, i.e. Si/Al atomic ratio decreased with the reaction time. Higher strength of geopolymers was associated with a higher fraction of aluminum rich structural units, higher crosslinking, and more compact structure. A rapid test for the assessment of FA reactivity and thus the applicability of FA for geopolymer synthesis was proposed
Geopolymers are versatile materials possessing properties superior to conventional materials as wel...
This paper investigated the effects of mechanical activation of fly ash (FA) from thermal power plan...
Fly ash, mechanically activated up to 120 min, has been used to synthesize geopolymers at ambient te...
This study evaluates the influence of the elemental distribution in the fly ash particles and their ...
Geopolymers are a family of green cementitious materials synthesized by alkali activation of alumino...
Iron rich brown fly ash has been segregated into (a) coarse, and (b) fine size fractions using air c...
The alkali-activation technology of coal fly ash is one of several potential solutions to minimize t...
Geopolymerization is the process, where synthetic alkali activated alumino-silicate material is prod...
Abstract This paper concentrates on valorization of the fly ash originating from thermal power plan...
The foucs this paper is on the reactivity of fly ash in relation to its geopolymerisation, that is s...
The microstructural and morphological evolution of fly ash geopolymer have been studied in relation ...
This study explores the reaction products of alkali-activated Class C fly ash-based aluminosilicate ...
Geopolymer is formed when a source of alumino-silicate is activated with highly concentrated alkalin...
Geopolymers are polymeric materials resulting from the polycondensation reaction of alumino-silicate...
This study investigates the improved reactivity of a geopolymer based on a combination of fly ash an...
Geopolymers are versatile materials possessing properties superior to conventional materials as wel...
This paper investigated the effects of mechanical activation of fly ash (FA) from thermal power plan...
Fly ash, mechanically activated up to 120 min, has been used to synthesize geopolymers at ambient te...
This study evaluates the influence of the elemental distribution in the fly ash particles and their ...
Geopolymers are a family of green cementitious materials synthesized by alkali activation of alumino...
Iron rich brown fly ash has been segregated into (a) coarse, and (b) fine size fractions using air c...
The alkali-activation technology of coal fly ash is one of several potential solutions to minimize t...
Geopolymerization is the process, where synthetic alkali activated alumino-silicate material is prod...
Abstract This paper concentrates on valorization of the fly ash originating from thermal power plan...
The foucs this paper is on the reactivity of fly ash in relation to its geopolymerisation, that is s...
The microstructural and morphological evolution of fly ash geopolymer have been studied in relation ...
This study explores the reaction products of alkali-activated Class C fly ash-based aluminosilicate ...
Geopolymer is formed when a source of alumino-silicate is activated with highly concentrated alkalin...
Geopolymers are polymeric materials resulting from the polycondensation reaction of alumino-silicate...
This study investigates the improved reactivity of a geopolymer based on a combination of fly ash an...
Geopolymers are versatile materials possessing properties superior to conventional materials as wel...
This paper investigated the effects of mechanical activation of fly ash (FA) from thermal power plan...
Fly ash, mechanically activated up to 120 min, has been used to synthesize geopolymers at ambient te...