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Keyphrases
Bentonite
100%
Anisotropy
100%
Tactoids
100%
X-ray Study
100%
Calcium Montmorillonite
100%
Compacted Clay
100%
X-ray Microtomography
66%
Micron-scale
66%
Clay Rock
66%
High Aspect Ratio
33%
Nanometer Scale
33%
Structural Anisotropy
33%
Water Retention
33%
Purification Process
33%
Local Orientation
33%
X Ray Diffraction
33%
Management Application
33%
Spent nuclear Fuel
33%
Waste Management
33%
Clay
33%
Low Humidity
33%
Buffer Material
33%
MX-80 Bentonite
33%
Humidity Conditions
33%
Microcracks
33%
Geological Disposal
33%
Morphological Properties
33%
Platelets
33%
Similar Material
33%
Nuclear Fuel Element
33%
Clay Platelets
33%
MX-80
33%
Barrier Formation
33%
Mineralogical Properties
33%
3D Morphology
33%
Radionuclide Release
33%
Anisotropic Samples
33%
Strong Orientation
33%
Small Angle X-ray Diffraction
33%
Material Forming
33%
Ca-montmorillonite
33%
Shale
33%
Clay Materials
33%
Accessory Minerals
33%
INIS
comparative evaluations
100%
x radiation
100%
nanostructures
100%
anisotropy
100%
clays
100%
bentonite
100%
calcium
100%
montmorillonite
100%
orientation
80%
humidity
40%
x-ray diffraction
40%
performance
20%
applications
20%
buffers
20%
morphology
20%
water
20%
aspect ratio
20%
barriers
20%
retention
20%
purification
20%
range
20%
particles
20%
spent fuels
20%
stacks
20%
cracks
20%
minerals
20%
radionuclides
20%
waste management
20%
sedimentation
20%
nuclear fuel elements
20%
shales
20%
Earth and Planetary Sciences
Microbalance
100%
Montmorillonite
100%
Bentonite
100%
Clay Mineral
100%
X Ray
100%
X Ray Diffraction
66%
Water Retention
33%
Waste Management
33%
Nuclear Fuel
33%
Accessory Mineral
33%
Radionuclide
33%
Engineering
Microscale
100%
Ray Diffraction
100%
Nanoscale
100%
Anisotropic
50%
Spent Nuclear Fuel
50%
Nanometre
50%
Nuclear Fuel Element
50%
Platelet
50%
Clay Platelet
50%
High Aspect Ratio
50%
Material Science
Anisotropy
100%
X-Ray Microtomography
66%
X-Ray Diffraction
66%
Platelet
66%
Nuclear Fuel Element
33%
Chemical Engineering
Clay Mineral
100%
Radioisotope
33%