Alkali-activated materials
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- Type
- article
- Published
- 2018-12-01
- Cited by
- 2,071
- References
- 98
- Access
- Open access
- OpenAlex
- https://openalex.org/W2494983366
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:138109972
Keywords
Raw material, Portland cement, Ecological footprint, Curing (chemistry), Cement
References
- Alkali-Activated Cements and Concretes
- Specification and use of geopolymer concrete
- Design and Mix Proportioning of Green Concrete Using 100% Fly Ash Based Hydraulic Binder
- Selection and characterisation of geological materials for use as geopolymer precursors
- Geopolymer chemistry and applications
- Characterization of Aged Slag Concretes
- Mechanical, thermal insulation, thermal resistance and acoustic absorption properties of geopolymer foam concrete
- Advances in understanding alkali-activated materials
- Electrically induced chloride ion transport in alkali activated slag concretes and the influence of microstructure
- Costs and carbon emissions for geopolymer pastes in comparison to ordinary portland cement
- Properties of Self-Consolidating Concrete for Prestressed Members
- Effect of phosphate on the hydration of alkali-activated red mud–slag cementitious material
- A method for allocation according to the economic behaviour in the EU-ETS for by-products used in cement industry
- High volume limestone alkali-activated cement developed by design of experiment
- Thermal Activation of Albite for the Synthesis of One‐Part Mix Geopolymers
- Preparation, structure and hydrothermal stability of alternative (sodium silicate-free) geopolymers
- Research on Set Retarder of High and Super High Strength Alkali -Activated Slag Cement and Concrete
- One‐Part Geopolymers Based on Thermally Treated Red Mud/NaOH Blends
- Geopolymerization of a silica residue from waste treatment of chlorosilane production
- Alkali-silica reaction (ASR) and alkali-carbonate reaction (ACR) in activated blast furnace slag cement (ABFSC) concrete
Cited by
- Waste Glass as Partial Binder Precursor and Fine Aggregate Replacement in Alkali Activated Slag/Fly ash System
- Factors influencing the compressive strength of fly ash based geopolymers
- Radiological characterization of anhydrous/hydrated cements and geopolymers
- Assessing the suitability of fly ash geopolymers for high temperature applications
- Effect of Na3PO4 on the Hydration Process of Alkali-Activated Blast Furnace Slag
- Study of Shrinkage Restraint Effects at Early-Age in Alkali-Activated Slag Mortars
- Some Issues of Shrinkage-Reducing Admixtures Application in Alkali-Activated Slag Systems
- Effect of water addition, plasticizer and alkaline solution constitution on fly ash based geopolymer concrete performance
- Sorptivity and acid resistance of ambient-cured geopolymer mortars containing nano-silica
- Influence of limestone content, fineness, and composition on the properties and microstructure of alkali-activated slag cement
- Evolution of geopolymer binders: a review
- A Comprehensive Study of Fly Ash Based Geopolymers Activated at Room Temperature
- Influence of class F fly ash and curing temperature on strength development of fly ash-recycled concrete aggregate blends
- Transforming Enhanced Landfill Mining Derived Gasification/Vitrification Glass into Low-Carbon Inorganic Polymer Binders and Building Products
- Thermal performance assessment of masonry made of ICEB’s stabilised with alkali-activated fly ash
- Application of an innovative binder in wood wool cement board
- Variation of natural radionuclides in non-ferrous fayalite slags during a one-month production period.
- Cement kiln dust and fly ash blends as an alternative binder for the stabilization of demolition aggregates
- Micro-mechanical properties of alkali-activated fly ash evaluated by nanoindentation
- Synthesis of a kaolin-based geopolymer using a novel fusion method and its application in effective water softening.
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