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Pollutant dynamics as influenced by seagrass beds: experiments with tributyltin in thalassia microcosms
S. N. Levine
, D. T. Rudnick
, J. R. Kelly
, R. D. Morton
, L. A. Buttel
, K. A. Carr
Natural Resources Research Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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Dive into the research topics of 'Pollutant dynamics as influenced by seagrass beds: experiments with tributyltin in thalassia microcosms'. Together they form a unique fingerprint.
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Keyphrases
Microcosm
100%
Seagrass Beds
100%
Tributyltin
100%
Thalassia
100%
Pollutant Dynamics
100%
Degradation Products
20%
Seawater
20%
Seagrass
20%
Sorption
6%
Food Chain
6%
Grass
6%
Sediment Core
6%
Invertebrates
6%
Adsorption
6%
Less Toxic
6%
Water Column
6%
14C-labelled
6%
Biocides
6%
Desorption
6%
Pollutant Degradation
6%
Associated Fauna
6%
Monobutyltin
6%
Pollutant Accumulation
6%
Thalassia Testudinum
6%
Flowing Seawater
6%
Productive Ecosystem
6%
Earth and Planetary Sciences
Seagrass Bed
100%
Tributyltin
100%
Degradation Product
20%
Sea Grasses
20%
Surface Area
6%
Sediment Core
6%
Water Column
6%
Desorption
6%
Carbon Dioxide
6%