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Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 05/2019, Volume 102, Issue 5, pp. 2965 - 2976
The knowledge of the aqueous phase composition during the hydration of tricalcium silicate (C 3 S) is a key issue for the understanding of cement hydration. A... 
calcium silicate | phase diagrams | Portland cement | hydration | precursors | C-S-H | MATERIALS SCIENCE, CERAMICS | AQUEOUS SOLUBILITY RELATIONSHIPS | PHASE | EVOLUTION | DISSOLUTION | SURFACE | COMPLEXATION | WATER | Electrical conductivity | Cement | Ion concentration | Nucleation | Hydration | Phase composition | Cement hydration | Electric contacts | Electrical resistivity | Silicon | Tricalcium silicate | Calcium ions
Journal Article
Cement and Concrete Research, ISSN 0008-8846, 08/2015, Volume 74, pp. 26 - 34
Simulations of tricalcium silicate (C S) hydration using a kinetic cellular automaton program, HydratiCA, indicate that the net rate depends both on C S... 
Kinetics | Hydration | Microstructure | Modeling | C3S | CEMENT | MATERIALS SCIENCE, MULTIDISCIPLINARY | CELLULAR-AUTOMATON MODEL | INDUCTION PERIOD | CONSTRUCTION & BUILDING TECHNOLOGY | DISSOLUTION | GROWTH-MODELS | ALITE HYDRATION | NUCLEATION | ACTIVATION-ENERGY | LAYER | Diffusion rate | Reaction kinetics | Supersaturation | Cements | Mathematical models | Dissolution | Tricalcium silicate
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 10/2007, Volume 90, Issue 10, pp. 3282 - 3288
The hydration kinetics of tricalcium silicate (C 3 S), the main constituent of portland cement, were analyzed with a mathematical “boundary nucleation” model... 
C-S-H | DICALCIUM SILICATE | TEMPERATURE | CEMENT | LAYER | MATERIALS SCIENCE, CERAMICS | SCATTERING | Silicon compounds | Growth | Analysis | Materials science | Models | Ceramics | Kinetics | Calcium | Silicas | Approximation | Nucleation | Hydration | Mathematical models | Boundaries | Surface area | Activation energy | Tricalcium silicate
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 07/2010, Volume 93, Issue 7, pp. 1894 - 1903
After decades of research, there still is no universal agreement on the basic mechanisms that are responsible for the induction period (Stage 2) in cement... 
C-S-H | C3S | DISSOLUTION | PORTLAND-CEMENT | GROWTH | MECHANISMS | MODEL | NUCLEATION | LAYER | MATERIALS SCIENCE, CERAMICS | INDUCTION PERIOD | Hydroxides | Silicates | Rain and rainfall | Analysis | Cement | Materials science | Ceramics | Effects | Calcium | Simulation | Precipitation hardening | Retarding | Precipitation | Hydration | Cements | Calcium hydroxide | Slaked lime | Tricalcium silicate
Journal Article
Cement and Concrete Research, ISSN 0008-8846, 02/2018, Volume 104, p. 118
In the case of coupled solids-solution reactions, any mean accelerating or decelerating one of the reaction, will also change the other reaction(s) in the same... 
Seeds | Hydration | Deceleration | Calcium silicates | Minerals | Dissolution | Precipitation | Silicas | Reaction kinetics | Solids | Kinetics | Calcium silicate hydrate | Tricalcium silicate
Journal Article
Construction and Building Materials, ISSN 0950-0618, 05/2018, Volume 170, pp. 402 - 417
Journal Article
Materials, ISSN 1996-1944, 2016, Volume 9, Issue 12, pp. 976 - 976
The understanding and control of early hydration of tricalcium silicate (C3S) is of great importance to cement science and concrete technology. However,... 
C-S-H | Kinetics | Hydration | Spectromicroscopy | Tricalcium silicate | MICROSCOPY STXM | spectromicroscopy | C3S HYDRATION | XANES | MATERIALS SCIENCE, MULTIDISCIPLINARY | tricalcium silicate | hydration | PORTLAND-CEMENT | ALITE | EDGES | ABSORPTION | kinetics | SPECTRA | Spectroscopy | Calcium | Microscopy | Morphology | Polymerization | Nanostructure | C–S–H | MATERIALS SCIENCE
Journal Article
CEMENT AND CONCRETE RESEARCH, ISSN 0008-8846, 02/2018, Volume 104, pp. 114 - 117
In contradiction to the proposition of Nicoleau and Nonat, it is shown that the rate of hydration of anhydrous tricalcium silicate (C3S) cannot be controlled... 
CONSTRUCTION & BUILDING TECHNOLOGY | MATERIALS SCIENCE, MULTIDISCIPLINARY | PASTES | AFWILLITE | Pastes | Seeds | Hydration | Kinetics | Minerals | Porosity | Permeability | Tricalcium silicate | Hydrates
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 04/2013, Volume 395, Issue 1, pp. 68 - 74
► We studied the hydration kinetics of tricalcium silicate cured with additives. ► The investigated additives are commonly used in the industry for extrusion.... 
Superplasticizer | Boundary Nucleation and Growth Model | Tricalcium silicate | Cellulose-ether | GROWTH-MODEL | CEMENT | BOUNDARY NUCLEATION | CHEMISTRY, PHYSICAL | ELASTIC NEUTRON-SCATTERING | CALCIUM-SILICATE | Analysis | Cellulose | Silicates
Journal Article
Cement and Concrete Research, ISSN 0008-8846, 2011, Volume 41, Issue 12, pp. 1208 - 1223
Journal Article
Materiales de Construccion, ISSN 0465-2746, 10/2015, Volume 65, Issue 320, p. e070
The pozzolanic reaction of nanosilica in contact with C3S was monitored via isothermal conduction calorimetry. Since that reaction is affected by heat, its... 
Calorimetry | Temperature | Hydration | Nanosilica | Tricalcium silicate | C-S-H | PERMEABILITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | STRENGTH | CONCRETE | INDUCTION PERIOD | CONSTRUCTION & BUILDING TECHNOLOGY | PORTLAND-CEMENT | NUCLEATION | Silicato tricálcico | Nanosílice | Temperatura | Hidratación | Calorimetría
Journal Article
Materiales de Construccion, ISSN 0465-2746, 01/2015, Volume 65, Issue 320
The pozzolanic reaction of nanosilica in contact with C3S was monitored via isothermal conduction calorimetry. Since that reaction is affected by heat, its... 
Nucleation | Hydration | Curing | Calorimetry | Nanostructure | Acceleration | Tricalcium silicate | Contact
Journal Article