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Reactive diffusion of Uranium in Compacted Clay: Evaluation of diffusion Coefficients by a Kinetic Approach

机译:压实粘土中铀的反应扩散:动力学方法的扩散系数评价

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The effect of compaction of bentonite on the diffusion behavior of uranium was studied for the safety assessment of radioactive waste (storage and disposal practices). Since the permeability of the compacted clay is very low, the main mechanism for radionuclide transport is governed by the diffusion phenomeon. The diffusion process of uranium in compacted clay as a porous medium has been modeled by Fick's second law taking into account the effect of sorption and considering the non-steady statE. The diffusion coefficients and profiles concentration values were calculated by a computational method using a numerical program based on the Newton-Raphson algorithm. In this simulation, the experimental values were used to determine the uranium concentration profiles versus depth of the clay pellet. It was concluded that the dry density of the compacted clay and the aqueous solution properties (pH and ionic strength of background electrolyte) played an important role in the uranium transport through compacted clays.
机译:研究了膨润土对铀的扩散行为的影响,为放射性废物的安全评估(储存和处置措施)。由于压实粘土的渗透性非常低,因此放射性核素传输的主要机制由扩散素对照控制。作为多孔介质的压实粘土中铀的扩散过程已经通过Fick的第二律制造了吸附的效果并考虑了非稳态的影响。通过基于Newton-Raphson算法的数值程序计算的扩散系数和分布浓度值计算。在该模拟中,使用实验值来确定铀浓度曲线与粘土颗粒的深度。结论是,压实粘土的干密度和水溶液性质(背景电解质的pH和离子强度)在铀通过压实粘土中起着重要作用。

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