INIS
cements
100%
dissolution
99%
glass
71%
fly ash
67%
portland cement
60%
environment
58%
hydration
56%
limestone
49%
kinetics
45%
silicates
45%
control
45%
topology
43%
carbon dioxide
42%
fillers
39%
mixtures
34%
water
32%
silica
30%
cementing
30%
comparative evaluations
29%
calcium silicates
27%
machine learning
26%
binders
25%
surfaces
24%
compression strength
24%
reactivity
23%
levels
23%
data
21%
minerals
21%
performance
20%
prediction
20%
ions
19%
reaction rate
19%
surface area
18%
range
18%
carbon
17%
modeling
17%
sand
16%
stabilization
16%
mechanical properties
15%
water vapor
15%
nucleation
15%
durability
15%
calcium nitrates
15%
simulation
15%
emission
14%
sorption
14%
heat
13%
electrochemistry
13%
absorption
13%
expansion
13%
Keyphrases
Fly Ash
68%
Dissolution Rate
66%
Ordinary Portland Cement
57%
Cementitious Materials
46%
Reaction Evolution
41%
Dissolution Kinetics
39%
Strength Evolution
39%
Hydration Rate
30%
Calcium Nitrate
29%
Silicate Dissolution
29%
Filler Effect
26%
Filler Content
26%
Portland Cement
26%
Hyperalkaline
26%
Machine Learning
26%
Tricalcium Silicate
26%
Topological Control
26%
Cement Replacement
24%
Reaction Rate
23%
Replacement Level
23%
Silicate Glass
22%
Strength Development
21%
Binder
20%
Compressive Strength
20%
Carbonation
19%
Cementation
19%
Dissolution Enhancement
19%
Alkali-silica Reaction
18%
Sorption
17%
Glass Dissolution
17%
Hydration Products
17%
Cement Mixture
16%
Property Development
16%
Reaction Development
16%
Aqueous Environment
15%
Alkaline Environment
15%
Property Evolution
15%
Chemical Durability
15%
Cement System
15%
Mechanical Properties
15%
Heat Release
14%
Silica
14%
Growth Model
13%
Nucleation Model
13%
Metakaolin
13%
Carbon Absorption
13%
Dynamic Vapor Sorption Analyzers
13%
Nitrate Ion
13%
Sand
13%
Carbon-carbon
13%
Engineering
Ordinary Portland Cement
89%
Compression Strength
43%
Compressive Strength
43%
Dissolution Rate
39%
Filler Content
26%
Crystalline Phase
26%
Learning System
26%
Portland Cement
26%
Cement Paste
24%
Strength Development
23%
Partial Replacement
22%
Mass Basis
21%
Carbonation
21%
Replacement Level
20%
Heat Release
16%
Porosity
16%
Hydration Product
15%
Silicon Dioxide
15%
Limestone Filler
13%
Mineral Addition
13%
Metakaolin
13%
Setting Behavior
13%
Setting Reaction
13%
Aggregate Reaction
13%
Rate Control
13%
Filler Surface
13%
Engineering Property
13%
Solid Ratio
13%
Measured Temperature
13%
Filler Particle
13%
Heterogeneous Nucleation
13%
Hydrothermal Synthesis
13%
Solution Method
13%
Backpropagation Network
13%
Quartz Sand
13%
Experimental Characterization
13%
Stable Phase
13%
Saturation Vapor Pressure
13%
Static Equilibrium
13%
Process Parameter
13%
Thermodynamic Equilibrium
13%
Thermal Cracking
13%
Concrete Mixture
13%
Phase Change Material
13%
Biochar
13%
Low-Temperature
13%
Conducted Experiment
13%
Temperature Condition
13%
Concrete Construction
12%