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Advances in using municipal solid waste incineration (MSWI) bottom ash as precursor for alkali-activation materials
Advances in using municipal solid waste incineration (MSWI) bottom ash as precursor for alkali-activation materials: A critical review
Utilization of mswi bottom ash as a mineral resource for low-carbon construction materials
Utilization of mswi bottom ash as a mineral resource for low-carbon construction materials: Quality-upgrade treatments, mix design method, and microstructure analysis
Reactivity and leaching potential of municipal solid waste incineration (MSWI) bottom ash as supplementary cementitious material and precursor for alkali-activated materials
Reactivity and leaching potential of municipal solid waste incineration (MSWI) bottom ash as supplementary cementitious material and precursor for alkali-activated materials
Carbonation Rate of Alkali-Activated Concretes
Carbonation Rate of Alkali-Activated Concretes: Effects of Compositional Parameters and Carbonation Conditions
RILEM TC 281-CCC Working Group 6: Carbonation of Alkali Activated Concrete
RILEM TC 281-CCC Working Group 6: Carbonation of Alkali Activated Concrete: Preliminary Results of a Literature Survey and Data Analysis
A review on the utilization of municipal solid waste incineration (MSWI) bottom ash as a mineral resource for construction materials
A review on the utilization of municipal solid waste incineration (MSWI) bottom ash as a mineral resource for construction materials
Micromechanics-guided development of strain-hardening alkali-activated composites
Micromechanics-guided development of strain-hardening alkali-activated composites: Towards a low-carbon built environment
Modification on the chloride binding capacity of alkali activated slag by applying calcium and aluminium containing phases
Modification on the chloride binding capacity of alkali activated slag by applying calcium and aluminium containing phases
Carbonation rate of alkali-activated concretes and high-volume SCM concretes
Carbonation rate of alkali-activated concretes and high-volume SCM concretes: a literature data analysis by RILEM TC 281-CCC
Rheology of alkali-activated slag pastes
Rheology of alkali-activated slag pastes: New insight from microstructural investigations by cryo-SEM
Autogenous shrinkage of alkali-activated slag and fly ash materials
Autogenous shrinkage of alkali-activated slag and fly ash materials: From mechanism to mitigating strategies
Molecular dynamics and experimental study on the adhesion mechanism of polyvinyl alcohol (PVA) fiber in alkali-activated slag/fly ash
Molecular dynamics and experimental study on the adhesion mechanism of polyvinyl alcohol (PVA) fiber in alkali-activated slag/fly ash
Effect of metakaolin on the autogenous shrinkage of alkali-activated slag-fly ash paste
Effect of metakaolin on the autogenous shrinkage of alkali-activated slag-fly ash paste
Cracking Potential of Alkali-Activated Concrete Induced by Autogenous Shrinkage
Cracking Potential of Alkali-Activated Concrete Induced by Autogenous Shrinkage
Role of curing conditions and precursor on the microstructure and phase chemistry of alkali-activated fly ash and slag pastes
Role of curing conditions and precursor on the microstructure and phase chemistry of alkali-activated fly ash and slag pastes
Cracking potential of alkali-activated slag and fly ash concrete subjected to restrained autogenous shrinkage
Cracking potential of alkali-activated slag and fly ash concrete subjected to restrained autogenous shrinkage
Durability of alkali-activated fly ash and slag concrete
Durability of alkali-activated fly ash and slag concrete
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