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Migration of fallout radiocaesium in a grassland soil from 1986 to 2001 - Part II: Evaluation of the activity-depth profiles by transport models

机译:1986年至2001年,沉积放射性铯在草地土壤中的迁移-第二部分:通过运输模型评估活动深度剖面

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The vertical migration of Cs-134, deposited by the Chernobyl fallout (1986), and Cs-137, deposited by the Chernobyl and the global fallout, in the soil of an undisturbed Bavarian grassland in Germany was investigated from 1986 to 2001. The activity-depth profiles of both isotopes at ten sampling dates were evaluated by the classical convection-dispersion equation and a random walk particle model. In both models, the apparent migration velocity nu and the apparent dispersion coefficient D were assumed to be independent of time. However, optimized values of nu and D were significantly different for the different locations sampled at different times. If nevertheless constant values of nu and D were used, the simulated activity densities per soil layer were out of the range of the spatial variability of the observed activity densities determined in 2001. It is concluded that without further simultaneous investigations e.g. on bioturbation at the study site, migration parameters of radiocaesium determined by classical transport models based on convection and dispersion during the first years after the deposition of the activity cannot be used for predictive purposes. (c) 2006 Elsevier B.V. All rights reserved.
机译:从1986年到2001年,对切尔诺贝利尘埃(1986)沉积的Cs-134和由切尔诺贝利尘埃和全球尘埃沉积的Cs-137在德国未受干扰的巴伐利亚草地土壤中的垂直迁移进行了研究。通过经典对流弥散方程和随机游动粒子模型评估了两种同位素在十个采样日的深度剖面。在这两个模型中,假定表观迁移速度nu和表观弥散系数D与时间无关。但是,对于在不同时间采样的不同位置,nu和D的优化值明显不同。如果仍然使用恒定的nu和D值,则每个土壤层的模拟活动密度不在2001年确定的观测活动密度的空间变异性范围之内。在研究地点的生物扰动上,放射性经典沉积物沉积后的最初几年中,基于对流和弥散的经典运输模型确定的放射性铯的迁移参数不能用于预测目的。 (c)2006 Elsevier B.V.保留所有权利。

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