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Effect of ettringite on thaumasite formation
S. Köhler,
D. Heinz
, L. Urbonas
Assistant Professorship of Mineral Construction Materials
Technical University of Munich
Research output
:
Contribution to journal
›
Article
›
peer-review
108
Scopus citations
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Keyphrases
Ettringite
100%
Thaumasite Formation
100%
Thaumasite
75%
Gypsum
50%
Low Temperature
25%
Ambient Temperature
25%
Solid Phase
25%
Liquid Phase
25%
Carbonate
25%
Sodium Sulfate
25%
Building Materials
25%
Heterogeneous nucleation
25%
Filtration
25%
Aqueous Suspension
25%
Fly Ash
25%
Inductively Coupled Plasma Atomic Emission Spectrometry
25%
Nanosilica
25%
Epitaxial Growth
25%
Rietveld Method
25%
Calcium-silicate-hydrate (C-S-H)
25%
Hardened Cement Paste
25%
Clinker Phases
25%
Sulfate Attack
25%
Calcium Sulfate
25%
Paste Structure
25%
Calcium-silicon Ratio
25%
Hydrated Paste
25%
Different Storage Periods
25%
Material Science
Silicon
100%
X-Ray Diffraction
100%
Nucleation
100%
Epitaxy
100%
Sodium
100%
Nanosilica
100%
Building Material
100%
Cement Paste
100%
Surface (Surface Science)
100%
Engineering
Ettringite
100%
Low-Temperature
25%
Building Material
25%
Structural Similarity
25%
Hardened Cement Paste
25%
Sulfate Attack
25%
Heterogeneous Nucleation
25%
Liquid Phase
25%
Sodium Sulfate
25%
Calcium Sulfate
25%
Silicon Dioxide
25%
Earth and Planetary Sciences
Ettringite
100%
X Ray Diffraction
25%
Liquid Phase
25%
Calcite
25%
Nucleation
25%
Inductively Coupled Plasma Method
25%