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Aging effects on cobalt availability in soils
Laura A. Wendling
, Jason K. Kirby
, Michael J. McLaughlin
Not published at VTT
Commonwealth Scientific and Industrial Research Organisation (CSIRO)
University of Adelaide
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
33
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Citations (Scopus)
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Keyphrases
Aging Effect
100%
Cobalt
100%
Co2+
100%
Aging
75%
Calcium Chloride
50%
Soil Solid Phase
50%
Soil Solution
50%
Plant Growth
25%
High pH
25%
Physicochemical Characteristics
25%
Alkaline pH
25%
Soil pH
25%
Aging Response
25%
Potential Risk
25%
Extractability
25%
Aging Process
25%
Plant Availability
25%
Micropore
25%
E-value
25%
Biological Availability
25%
Soil Contamination
25%
Lability
25%
Isotope Exchange Technique
25%
L-values
25%
Manganese Oxyhydroxide
25%
Iron-manganese
25%
Chemical Extraction
25%
Exchangeability
25%
Lattice Diffusion
25%
Divalent Cobalt
25%
Ammonium Nitrate
25%
Nonexchangeable
25%
Soil Environment
25%
Soil Biota
25%
Metal Bioavailability
25%
Chemical Plant
25%
Soil Minerals
25%
Crystal Lattice
25%
Cobalt Contamination
25%
Surface Binding
25%
Metal Precipitates
25%
Engineering
Micropore
100%
Aging Effect
100%
Primary Factor
100%
Lattice Diffusion
100%
Crystal Structure
100%
Alkalinity
100%
Iron
100%
INIS
aging
100%
availability
100%
soils
100%
cobalt
100%
metals
22%
carbon dioxide
22%
ph value
16%
values
11%
solutions
11%
surfaces
11%
solids
11%
salts
11%
biological availability
11%
minerals
11%
risks
5%
environment
5%
pools
5%
iron
5%
diffusion
5%
equilibrium
5%
range
5%
precipitation
5%
contamination
5%
extraction
5%
plant growth
5%
manganese
5%
calcium chlorides
5%
ammonium nitrates
5%
isotope exchange
5%
crystal lattices
5%
Agricultural and Biological Sciences
Soil Solution
100%
Bioavailability
100%
Soil Minerals
50%
Soil Biota
50%
Ammonium Nitrate
50%
Table Salt
50%