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Self-Diffusion of Water and Ions in Clay Barriers
Ian Charles Bourg
, Christophe Tournassat
Civil & Environmental Engineering
High Meadows Environmental Institute
Princeton Institute for Computational Science and Engineering
Princeton Materials Institute
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
33
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Dive into the research topics of 'Self-Diffusion of Water and Ions in Clay Barriers'. Together they form a unique fingerprint.
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Keyphrases
Self-diffusion
100%
Ion Diffusion
100%
Water Diffusion
100%
Clay Barrier
100%
Clay Rock
100%
Diffusion Coefficient
66%
Clay Minerals
66%
Molecular Diffusion
66%
Clay Mineral Surface
66%
Fundamental Phenomena
66%
Pressure Gradient
33%
Microstructure
33%
Swelling Pressure
33%
Porous Media
33%
Diffusion Process
33%
Surface Charge Density
33%
Clay Materials
33%
Hydraulic Permeability
33%
Experimental Challenge
33%
Developing Model
33%
Surface Complexes
33%
Conceptual Model
33%
Hydraulic Pressure
33%
Experimental Database
33%
Bentonite
33%
Distance Function
33%
Subsurface Conditions
33%
Macroscopic Parameters
33%
Kappa Coefficient
33%
Bentonite Barrier
33%
Adsorption-diffusion
33%
Mass Transport Mechanism
33%
Negative Surface Charge
33%
Swarm Interaction
33%
Electrostatic Double Layer
33%
Engineering
Diffusion
100%
Length Scale
50%
Subsurface
50%
Relative Importance
50%
Surface Charge Density
50%
Hydraulic Permeability
50%
Double Layer
50%
Diffusion Process
50%
Hydraulic Pressure
50%
Multiple Scale
50%
Mass Transport Mechanism
50%
Electrostatic Force
50%
Pressure Gradient
50%
Constrainedness
50%
Earth and Planetary Sciences
Clay Mineral
100%
Diffusivity
50%
Mineral Surface
50%
Bentonite
50%
Molecular Diffusion
50%
Mass Transport
25%
Pressure Gradient
25%
Mechanics
25%
Electrostatic Force
25%