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Radionuclide transfer in marine coastal ecosystems, a modelling study using metabolic processes and site data

机译:海洋沿海生态系统中放射性核素的转移,利用代谢过程和站点数据进行的建模研究

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摘要

This study implements new site-specific data and improved process-based transport model for 26 elements (Ac, Ag, Am, Ca, Cl, Cm, Cs, Ho, I, Nb, Ni, Np, Pa, Pb, Pd, Po, Pu, Ra, Se, Sm, Sn, Sr, Tc, Th, U, Zr), and validates model predictions with site measurements and literature data. The model was applied in the safety assessment of a planned nuclear waste repository in Forsmark, OEregrundsgrepen (Baltic Sea). Radionuclide transport models are central in radiological risk assessments to predict radionuclide concentrations in biota and doses to humans. Usually concentration ratios (CRs), the ratio of the measured radionuclide concentration in an organism to the concentration in water, drive such models. However, CRs vary with space and time and CR estimates for many organisms are lacking. In the model used in this study, radionuclides were assumed to follow the circulation of organic matter in the ecosystem and regulated by radionuclide-specific mechanisms and metabolic rates of the organisms. Most input parameters were represented by log-normally distributed probability density functions (PDFs) to account for parameter uncertainty. Generally, modelled CRs for grazers, benthos, zooplankton and fish for the 26 elements were in good agreement with site-specific measurements. The uncertainty was reduced when the model was parameterized with site data, and modelled CRs were most similar to measured values for particle reactive elements and for primary consumers. This study clearly demonstrated that it is necessary to validate models with more than just a few elements (e.g. Cs, Sr) in order to make them robust. The use of PDFs as input parameters, rather than averages or best estimates, enabled the estimation of the probable range of modelled CR values for the organism groups, an improvement over models that only estimate means. Using a mechanistic model that is constrained by ecological processes enables (ⅰ) the evaluation of the relative importance of food and water uptake pathways and processes such as assimilation and excretion, (ⅱ) the possibility to extrapolate within element groups (a common requirement in many risk assessments when initial model parameters are scarce) and (ⅲ) predictions of radionuclide uptake in the ecosystem after changes in ecosystem structure or environmental conditions. These features are important for the longterm (>1000 year) risk assessments that need to be considered for a deep nuclear waste repository.
机译:这项研究针对26种元素(Ac,Ag,Am,Ca,Cl,Cm,Cs,Ho,I,Nb,Ni,Np,Pa,Pb,Pd,Po ,Pu,Ra,Se,Sm,Sn,Sr,Tc,Th,U,Zr),并使用站点测量和文献数据验证模型预测。该模型已用于OEregrundsgrepen(波罗的海)Forsmark计划中的核废料处置库的安全评估中。放射性核素运输模型在放射风险评估中至关重要,可预测生物群中的放射性核素浓度和对人类的剂量。通常使用浓度比(CRs)(即生物体中测得的放射性核素浓度与水中的浓度之比)来驱动此类模型。但是,CR随时间和空间而变化,并且缺少许多生物的CR估算值。在本研究中使用的模型中,假定放射性核素遵循生态系统中有机物质的循环,并受放射性核素特异机制和生物代谢速率的调节。大多数输入参数由对数正态分布概率密度函数(PDF)表示,以说明参数不确定性。通常,针对食草动物,底栖动物,浮游动物和鱼类的26种元素的模型CR与特定地点的测量结果非常吻合。当使用现场数据对模型进行参数化时,不确定性会降低,并且建模的CR与粒子反应性元素和主要消费者的测量值最相似。这项研究清楚地表明,有必要对不仅仅包含几个元素(例如Cs,Sr)的模型进行验证,以使其具有鲁棒性。使用PDF作为输入参数,而不是平均值或最佳估计值,可以估计生物群的模型CR值的可能范围,这是对仅通过估计的模型的改进。使用受生态过程约束的机制模型可以(ⅰ)评估食物和水吸收途径和过程(如同化和排泄)的相对重要性,(ⅱ)在元素组内推断的可能性(许多国家的共同要求) (b)在生态系统结构或环境条件发生变化后,生态系统中放射性核素吸收的预测。这些功能对于长期(大于1000年)的风险评估非常重要,而对于深部核废料处置库则需要考虑这些评估。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2014年第7期|48-59|共12页
  • 作者单位

    The Department of Ecology, Environment and Plant Sciences, Stockholm University, 70697 Stockholm, Sweden;

    The Department of Ecology, Environment and Plant Sciences, Stockholm University, 70697 Stockholm, Sweden;

    The Department of Ecology, Environment and Plant Sciences, Stockholm University, 70697 Stockholm, Sweden;

    Swedish Nuclear Fuel and Waste Management Co, (SKB), Box 250, 10124 Stockholm, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Probabilistic simulations; Concentration ratio; Baltic Sea; Bioaccumulation; Risk assessment;

    机译:概率模拟;浓度比;波罗的海;生物蓄积;风险评估;

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