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Volumn 54, Issue 3, 2001, Pages 345-360
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A mechanistic sub-model predicting the influence of potassium on radiocesium uptake in aquatic biota
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Author keywords
Aquatic systems; Bio uptake; Modelling; Potassium; Predictive power; Radiocesium; Validations
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Indexed keywords
CESIUM 137;
POTASSIUM;
AQUATIC ORGANISM;
BIOLOGICAL UPTAKE;
CESIUM ISOTOPE;
POTASSIUM;
RADIOACTIVE POLLUTION;
ARTICLE;
BIOACCUMULATION;
CHERNOBYL ACCIDENT;
DYNAMICS;
ECOSYSTEM;
FISH;
ION TRANSPORT;
LAKE;
MEMBRANE TRANSPORT;
MICHAELIS CONSTANT;
MODEL;
NONHUMAN;
PREDICTION;
RADIOACTIVITY;
SCIENCE;
TRANSPORT KINETICS;
VALIDATION PROCESS;
ACCIDENTS, RADIATION;
ANIMALS;
CESIUM RADIOISOTOPES;
ECOSYSTEM;
FISHES;
FOOD CHAIN;
FORECASTING;
HALF-LIFE;
ION TRANSPORT;
MODELS, THEORETICAL;
POTASSIUM;
UKRAINE;
WATER POLLUTANTS, RADIOACTIVE;
CELLULAR ORGANISMS;
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EID: 0035130611
PISSN: 0265931X
EISSN: None
Source Type: Journal
DOI: 10.1016/S0265-931X(00)00180-6 Document Type: Article |
Times cited : (4)
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References (20)
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