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首页> 外文期刊>Journal of Environmental Radioactivity >A comparison between the Example Reference Biosphere model ERB 2B and a process-based model: simulation of a natural release scenario
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A comparison between the Example Reference Biosphere model ERB 2B and a process-based model: simulation of a natural release scenario

机译:示例参考生物圈模型ERB 2B与基于过程的模型之间的比较:自然释放情景的模拟

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The BIOMASS methodology was developed with the objective of constructing defensible assessment biospheres for assessing potential radiological impacts of radioactive waste repositories. To this end, a set of Example Reference Biospheres were developed to demonstrate the use of the methodology and to provide an international point of reference. In this paper, the performance of the Example Reference Biosphere model ERB 2B associated with the natural release scenario, discharge of contaminated groundwater to the surface environment, was evaluated by comparing its long-term projections of radionuclide dynamics and distribution in a soil-plant system to those of a process-based, transient advection-dispersion model (AD). The models were parametrised with data characteristic of a typical rainfed winter wheat crop grown on a sandy loam soil under temperate climate conditions. Three safety-relevant radionuclides, ~(99)Tc, ~(129)I and ~(237)Np with different degree of sorption were selected for the study. Although the models were driven by the same hydraulic (soil moisture content and water fluxes) and radiological (K_ds) input data, their projections were remarkably different. On one hand, both models were able to capture short and long-term variation in activity concentration in the subsoil compartment. On the other hand, the Reference Biosphere model did not project any radionuclide accumulation in the topsoil and crop compartments. This behaviour would underestimate the radiological exposure under natural release scenarios. The results highlight the potential role deep roots play in soil-to-plant transfer under a natural release scenario where radionuclides are released into the subsoil. When considering the relative activity and root depth profiles within the soil column, much of the radioactivity was taken up into the crop from the subsoil compartment. Further improvements were suggested to address the limitations of the Reference Biosphere model presented in this paper.
机译:研发了BIOMASS方法,其目的是建立可辩护的评估生物圈,以评估放射性废物处置库的潜在放射学影响。为此,开发了一组示例参考生物圈以证明该方法的使用并提供国际参考点。本文通过比较土壤植物系统中放射性核素动力学的长期预测及其分布,评估了示例参考生物圈模型ERB 2B与自然释放情景,被污染的地下水排放到地表环境的性能。类似于基于过程的瞬态对流扩散模型(AD)。对这些模型进行参数设置,得到具有温带气候条件下在沙壤土上生长的典型雨养冬小麦作物的数据特征。选择了三种具有不同吸附度的安全相关的放射性核素〜(99)Tc,〜(129)I和〜(237)Np。尽管这些模型是由相同的水力(土壤水分和水通量)和放射学(K_ds)输入数据驱动的,但它们的预测却截然不同。一方面,两个模型都能够捕获地下土壤室内活动浓度的短期和长期变化。另一方面,参考生物圈模型没有预测表层土壤和作物区室中的任何放射性核素积累。这种行为会低估自然释放情景下的放射暴露。结果表明,在放射性核素释放到地下的自然释放情况下,深根在土壤到植物的转移中可能发挥潜在作用。当考虑土壤柱内的相对活度和根深分布时,大部分放射性是从地下土壤室吸收到作物中的。建议进一步改进以解决本文介绍的参考生物圈模型的局限性。

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