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A process-based model for the partitioning of soluble, suspended particulate and bed sediment fractions of plutonium and caesium in the eastern Irish Sea

机译:基于过程的model东爱尔兰海中p和铯的可溶性,悬浮颗粒物和床沉积物组分的分配模型

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摘要

A dynamic model of plutonium behaviour in the marine environment has been developed, representing the oxidation state distribution and partitioning of plutonium between the soluble, colloidal, suspended particulate and seabed sediment fractions. With simple re-parameterisation, this model can also be applied to ~(137)Cs. The model, which is calibrated and validated against field data, has been used to predict concentrations of Pu(α) and ~(137)Cs in both water and seabed sediments from the vicinity of the Sellafield Ltd. reprocessing plant in Cumbria, UK. The model predicts that sediment reworking and transport are the key environmental processes as the Sellafield Pu(α) and ~(137)Cs discharge continues to decline. Inventory calculations generated by the model are consistent with previous estimations. For a hypothetical post-discharge scenario, the concentrations of these radionuclides in both seawater and surface sediments are predicted to decrease sharply, concurrent with a downward vertical migration of the activity retained in sediments.
机译:建立了海洋环境中behavior行为的动力学模型,该模型表示p的氧化态分布和在可溶性,胶体,悬浮颗粒和海底沉积物组分之间的分配。通过简单的重新参数化,该模型也可以应用于〜(137)Cs。该模型已根据现场数据进行了校准和验证,已用于预测英国坎布里亚郡Sellafield Ltd.加工厂附近水和海底沉积物中的Pu(α)和〜(137)Cs浓度。该模型预测,随着Sellafield Pu(α)和〜(137)Cs排放继续减少,沉积物的再加工和运输是关键的环境过程。该模型生成的库存计算与先前的估计一致。对于假设的排放后情景,预计海水和表层沉积物中这些放射性核素的浓度将急剧下降,同时沉积物中保留的活性向下垂直迁移。

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