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Impact of in-pore salt crystallization on transport properties
Rosa M. Espinosa-Marzal
, George W. Scherer
Civil & Environmental Engineering
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Contribution to journal
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Article
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peer-review
84
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Keyphrases
Transport Properties
100%
Pore Clogging
100%
Salt Crystallization
100%
Pore Size Distribution
66%
Crystallization
33%
Capillary
33%
Porous Materials
33%
Pore Space
33%
Distribution Properties
33%
Salt Solution
33%
Sodium Chloride
33%
Salt Crystals
33%
Sodium Sulfate
33%
Crystallization Pressure
33%
Indiana
33%
Confined Space
33%
Decane
33%
Building Materials
33%
Pore Filling
33%
Damaged Building
33%
Magnesium Sulfate
33%
Salt Damage
33%
Rock Damage
33%
Salt Properties
33%
Rock Weathering
33%
Crystallization Front
33%
Capillary Uptake
33%
Contaminated Material
33%
Engineering
Pore Space
100%
Sodium Sulfate
100%
Building Material
100%
Magnesium Sulfate
100%
Model Material
100%
Damage to Building
100%
Porosity
100%
Earth and Planetary Sciences
Transport Property
100%
Transportation
100%
Pore Space
50%
Indiana
50%
Crystal
50%
Sodium
50%
Porous Material
50%
Limestone
50%
Magnesium
50%
Table Salt
50%
Sodium Chloride
50%
Material Science
Sodium
100%
Pore Size Distribution
100%
Building Material
50%
Magnesium
50%
Porous Material
50%
Chloride
50%
Limestone
50%
Weathering
50%
Chemical Engineering
Sodium Chloride
100%
Sodium Sulfate
100%
Magnesium
100%