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Attempt to model laboratory-scale diffusion and retardation data
Pirkko Hölttä
*
, Marja Siitari-Kauppi
, M. Hakanen
, Vesa Tukiainen
*
Corresponding author for this work
VTT Technical Research Centre of Finland
University of Helsinki
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
18
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Keyphrases
Retardation
100%
In-diffusion
100%
Tonalite
75%
Sodium
50%
Strontium
50%
Kd Values
50%
Column Experiment
50%
Crushed Rock
50%
Order of Magnitude
25%
Radionuclides
25%
Spent nuclear Fuel
25%
Numerical Code
25%
Batch Experiments
25%
Transport Model
25%
Gneiss
25%
Distribution Ratio
25%
Mass Distribution
25%
Mica
25%
Porous Matrix
25%
Elution Curve
25%
Column Method
25%
Intact Rock
25%
Dynamic Fracture
25%
Retardation Parameters
25%
Rock Matrix
25%
Underground Repository
25%
Ratio Values
25%
INIS
data
100%
diffusion
100%
laboratories
100%
calcium
100%
rocks
83%
values
66%
fractures
50%
matrices
33%
sodium
33%
strontium
33%
comparative evaluations
16%
safety
16%
interactions
16%
dynamics
16%
spent fuels
16%
porous materials
16%
underground
16%
curves
16%
compatibility
16%
radionuclides
16%
transport theory
16%
mass distribution
16%
mica
16%
Chemistry
Kd
100%
Strontium
100%
Sodium
100%
Spent Fuel Radioactive Waste
50%
Porosity
50%
Radioisotope
50%
Transport Theory
50%
Cubic Crystal
50%
Earth and Planetary Sciences
Laboratory Scale
100%
Tonalite
100%
Radioactive Isotope
33%
Nuclear Fuel
33%
Gneiss
33%
Mass Distribution
33%
Elution
33%
Porosity
33%
Engineering
Retardation
100%
Column Experiment
50%
Crushed Rock
50%
Spent Nuclear Fuel
25%
Porous Matrix
25%
Rock Matrix
25%
Distribution Ratio
25%
Intact Rock
25%
Dynamic Fracture
25%
Mass Distribution
25%
Chemical Engineering
Radioisotope
100%
Elution
100%
Biochemistry, Genetics and Molecular Biology
Facilitated Diffusion
100%
Elution
20%
Porosity
20%