International audienceCarbonation of alkali activated materials is one of the main deteriorations affecting their durability. However, current understanding of the structural alteration of these materials exposed to an environment inducing carbonation at the nano/micro scale remains limited. This study examined the evolution of phase assemblages of alkali activated slag mortars subjected to accelerated carbonation (1% CO2, 60% relative humidity, up to 28 day carbonation) using XRD, FTIR and 29Si, 27Al, and 23Na MAS NMR. Samples with three water to binder (w/b) ratios (0.35, 0.45, and 0.55) were investigated. The results show that the phase assemblages mainly consisted of C-A-S-H, a disordered remnant aluminosilicate binder, and a minor hydr...
The aim of this paper was to investigate the effect of natural carbonation on the pore structure, an...
© 2017 American Concrete Institute. All rights reserved. Although notable advances have been made in...
Binders formed through alkali-activation of slags and fly ashes, including ‘fly ash geopolymers’, pr...
International audienceCarbonation of alkali activated materials is one of the main deteriorations af...
Carbonation is inevitable process during the service life of concrete structures, where CO2 causes d...
In this study, the effects of silicate modulus of activators (Ms) on carbonation of alkali-activated...
The phase changes in alkali-activated slag samples when exposed to supercritical carbonation were ev...
© 2017 Elsevier Ltd In this work, the volume changes of alkali-activated slag (AAS) paste prepared u...
In this paper, carbonation resistance of alkali-activated slag (AAS) pastes exposed to natural and a...
Alkali-activated ground granulated blast-slag (AAS) is the most obvious alternative material for ord...
The structural changes induced by accelerated carbonation in alkali-activated slag/metakaolin (MK) c...
The hydration mechanism and strength development of sodium carbonate-activated slag-based systems ma...
As the building sector is expanding, a growing interest in technologies that can reduce the CO2 emis...
This PhD study aims to understand the carbonation mechanism of slag-rich waste forms and consequentl...
Efflorescence of alkali activated materials (AAMs) is caused by alkali leaching and precipitation of...
The aim of this paper was to investigate the effect of natural carbonation on the pore structure, an...
© 2017 American Concrete Institute. All rights reserved. Although notable advances have been made in...
Binders formed through alkali-activation of slags and fly ashes, including ‘fly ash geopolymers’, pr...
International audienceCarbonation of alkali activated materials is one of the main deteriorations af...
Carbonation is inevitable process during the service life of concrete structures, where CO2 causes d...
In this study, the effects of silicate modulus of activators (Ms) on carbonation of alkali-activated...
The phase changes in alkali-activated slag samples when exposed to supercritical carbonation were ev...
© 2017 Elsevier Ltd In this work, the volume changes of alkali-activated slag (AAS) paste prepared u...
In this paper, carbonation resistance of alkali-activated slag (AAS) pastes exposed to natural and a...
Alkali-activated ground granulated blast-slag (AAS) is the most obvious alternative material for ord...
The structural changes induced by accelerated carbonation in alkali-activated slag/metakaolin (MK) c...
The hydration mechanism and strength development of sodium carbonate-activated slag-based systems ma...
As the building sector is expanding, a growing interest in technologies that can reduce the CO2 emis...
This PhD study aims to understand the carbonation mechanism of slag-rich waste forms and consequentl...
Efflorescence of alkali activated materials (AAMs) is caused by alkali leaching and precipitation of...
The aim of this paper was to investigate the effect of natural carbonation on the pore structure, an...
© 2017 American Concrete Institute. All rights reserved. Although notable advances have been made in...
Binders formed through alkali-activation of slags and fly ashes, including ‘fly ash geopolymers’, pr...