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Searched for: subject%3A%22activity%22
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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: Preliminary Results of a Literature Survey and Data Analysis
Carbonation rate of alkali-activated concretes and high-volume SCM concretes: a literature data analysis by RILEM TC 281-CCC
Carbonation rates of alkali-activated and cement based concretes
Carbonation rates of alkali-activated and cement based concretes
Role of curing conditions and precursor on the microstructure and phase chemistry of alkali-activated fly ash and slag pastes
Carbonation mechanism of alkali-activated fly ash and slag materials: In view of long-term performance predictions
Effect of curing conditions on the pore solution and carbonation resistance of alkali-activated fly ash and slag pastes
Pore solution composition of alkali-activated slag/fly ash pastes
Development and application of an environmentally friendly ductile alkali-activated composite
Effect of natural carbonation on the pore structure and elastic modulus of the alkali-activated fly ash and slag pastes
Setting, Strength, and Autogenous Shrinkage of Alkali-Activated Fly Ash and Slag Pastes: Effect of Slag Content
Microstructural and Mineralogical Analysis of Alkali Activated Fly Ash-Slag Pastes
Durability of alkali-activated fly ash and slag concrete
Searched for: subject%3A%22activity%22
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