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THE BIOACCUMULATION OF METHYLMERCURY IN AN AQUATIC ECOSYSTEM

机译:水生生态系统中甲基汞的生物累积

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A model for the bioaccumulation of methyl-mercury in an aquatic ecosystem is described. This model combines predator-prey equations for interactions across three trophic levels with pharmacokinetic equations for toxin elimination at each level. The model considers the inflow and outflow of mercury via tributaries, precipitation, deposition and bacterial methylation to determine the concentration of toxin in the aquatic system. A sensitivity analysis shows that the model is most sensitive to the rate of energy transfer from the first trophic level to the second. Using known elimination constants for methyl mercury in various fish species and known sources of input of methyl mercury for Lake Erie, the model predicts toxin levels at the three trophic levels that are reasonably close to those measured in the lake. The model predicts that eliminating methyl mercury input to the Lake from two of its tributary rivers would result in a 44 percent decrease in toxin at each trophic level.
机译:描述了水生生态系统中甲基汞生物累积模型。该模型将捕食者 - 猎物猎物方程组合在三种营养水平上的相互作用,每个水平都有药代动力学方程进行毒素消除。该模型通过支流,沉淀,沉积和细菌甲基化来透过支流,沉淀,沉积和细菌甲基化的流入和流出,以确定水生系统中毒素的浓度。灵敏度分析表明,该模型对从第一途径到第二个营养水平的能量转移速率最敏感。在各种鱼类中的已知消除常数用于各种鱼类和艾利湖甲基汞输入的已知来源,该模型预测了三种营养水平的毒素水平,这是合理接近在湖中测量的水平。该模型预测,从其两条支流河中消除了从其两条支流河中的甲基汞的输入将导致每种营养水平的毒素减少44%。

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