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Cadmium effects on the environment as related to wood ash recycling
Jesper Liengaard Johansen
Terrestrial Ecology
SCIENCE PhD theses
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Keyphrases
Cadmium
100%
Wood Ash
54%
Cadmium Accumulation
36%
Cadmium Toxicity
27%
Mycorrhiza
18%
Wood Biomass
18%
Bioaccumulation
18%
Small Fraction
9%
Fossil Fuels
9%
Risk Threshold
9%
Soil Protists
9%
Cadmium Stress
9%
Soil Ecosystem
9%
Combustion
9%
Precautionary Principle
9%
Aqueous Media
9%
Beneficial Effects
9%
Synergistic Effect
9%
Sorption Process
9%
Cadmium Concentration
9%
Living Organisms
9%
Protists
9%
Soil Organisms
9%
Risk Assessment
9%
Xenobiotics
9%
Biofuel
9%
Mycorrhizal Symbiosis
9%
Natural Conditions
9%
Mycorrhizal Colonization
9%
Sorption Capacity
9%
Production Forest
9%
Soil Fertility
9%
Cadmium Bioaccumulation
9%
Growth Conditions
9%
Heavy Metal Cadmium
9%
Human Health
9%
CO2-neutral
9%
Earth and Planetary Sciences
Recycling
100%
Bioaccumulation
37%
Mycorrhiza
25%
Host Plant
12%
Soil Organism
12%
Soil Ecosystem
12%
Heavy Metal
12%
Biofuel
12%
Human Health
12%
Precautionary Principle
12%
Soil Fertility
12%
Forest Production
12%
Carbon Dioxide
12%
Fossil Fuel
12%
Agricultural and Biological Sciences
Wood Ash
100%
Bioaccumulation
37%
Mycorrhiza
25%
Protist
25%
Soil Fertility
12%
Host Plant
12%
Biofuel
12%
Bioavailability
12%
Precautionary Principle
12%
Fossil Fuel
12%
Soil Ecosystem
12%
Heavy Metal
12%