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Leaching of 14C in repository conditions: Transport and speciation
Tiina Heikola
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Dive into the research topics of 'Leaching of 14C in repository conditions: Transport and speciation'. Together they form a unique fingerprint.
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Keyphrases
Activated Material
100%
Aqueous CO2
100%
Carbides
100%
Carbon Analysis
100%
Chemical Form
100%
Chemical Transport
100%
Decommissioning Waste
100%
Double Distilled Water
100%
Filtration
100%
Fuel Cladding
100%
Fuel Reactor
100%
Highly Sensitive
100%
Hydrocarbons
100%
Impurities
100%
Inorganic Carbon
100%
Irradiated Steel
100%
Leaching
100%
Leaching Experiment
100%
Literature Research
100%
Long Half-life
100%
Long-term Exposure
100%
Material Structure
100%
Membrane Filter
100%
Neutron
100%
Nuclear Reactions
100%
Nuclear Waste Disposal
100%
Organic Carbon
100%
Organic Compounds
100%
Polyethersulfone
100%
Polypropylene Membrane
100%
Radionuclides
100%
Reaction Mechanism
100%
Reactor Graphite
100%
Reactor Pressure Vessel
100%
Repository Conditions
100%
Safe Disposal
100%
Small Organic Molecules
100%
Speciation
100%
Spent Fuel
100%
Stainless Steel
100%
Steel Material
100%
Ultrafiltration Volume
100%
Water Experiment
100%
Chemistry
Carbon Dioxide
100%
Cladding
100%
Membrane Filter
100%
Nuclear Reaction
100%
Organic Compound
100%
Organic Molecule
100%
Poly(ether-Sulfone) Polymer
100%
Poly(propylene)
100%
Pressure Vessel
100%
Radioactive Waste
100%
Radioisotope
100%
Spent Fuel Radioactive Waste
100%
Stainless Steel
100%
INIS
assessments
20%
atoms
20%
carbides
20%
carbon
80%
carbon 13
20%
carbon 14
100%
carbon dioxide
20%
cladding
20%
decommissioning
20%
filters
40%
filtration
40%
graphite
20%
half-life
20%
hydrocarbons
20%
impurities
20%
interference
20%
iron
20%
irradiation
20%
leaching
100%
membranes
20%
molecules
20%
neutrons
20%
nitrogen
40%
nitrogen 14
20%
nuclear reactions
20%
nuclear wastes
20%
organic compounds
20%
origin
20%
polypropylene
20%
pressure vessels
20%
production
20%
radionuclides
20%
reaction mechanisms
20%
reactors
40%
reduction
20%
solutions
20%
spent fuels
20%
stainless steels
20%
steels
40%
transport
100%
volume
20%
wastes
20%
water
40%
Engineering
Activated Material
100%
Iron
100%
Membrane Filter
100%
Organic Molecule
100%
Reactor Pressure Vessel
100%
Safe Disposal
100%
Spent Fuels
100%
Stainless Steel
100%
Material Science
Carbide
100%
Carbon Dioxide
100%
Materials Structure
100%
Polypropylene
100%
Radioactive Waste
100%
Stainless Steel
100%
Chemical Engineering
Carbon Dioxide
100%
Membrane Filter
100%
Poly(ether-Sulfone) Polymer
100%
Polypropylene
100%
Radioisotope
100%
Reactor Pressure
100%