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Retardation of mobile radionuclides in granitic rock fractures by matrix diffusion

机译:基质扩散法对花岗岩中移动放射性核素的阻滞作用

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Transport of iodide and sodium has been studied by means of block fracture and core column experiments to evaluate the simplified radionuclide transport concept. The objectives were to examine the processes causing retention in solute transport, especially matrix diffusion, and to estimate their importance during transport in different scales and flow conditions. Block experiments were performed using a Kuru Grey granite block having a horizontally planar natural fracture. Core columns were constructed from cores drilled orthogonal to the fracture of the granite block. Several tracer tests were performed using uranine, I-131 and Na-22 as tracers at water flow rates 0.7-50 mu L min(-1). Transport of tracers was modelled by applying the advection-dispersion model based on the generalized Taylor dispersion added with matrix diffusion. Scoping calculations were combined with experiments to test the model concepts. Two different experimental configurations could be modelled applying consistent transport processes and parameters. The processes, advection-dispersion and matrix diffusion, were conceptualized with sufficient accuracy to replicate the experimental results. The effects of matrix diffusion were demonstrated on the slightly sorbing sodium and mobile iodine breakthrough curves.
机译:已通过嵌段断裂和岩心柱实验研究了碘和钠的传输,以评估简化的放射性核素传输概念。目的是检查导致溶质运留的过程,尤其是基质扩散,并评估其在不同规模和流动条件下的运输过程的重要性。使用具有水平平面自然裂缝的库鲁灰色花岗岩块进行块实验。岩心柱由垂直于花岗岩块断裂钻出的岩心构造而成。使用尿素,I-131和Na-22作为示踪剂在水流速0.7-50μLmin(-1)下进行了几次示踪剂测试。示踪剂的运移是基于对流弥散模型建立的,该对流弥散模型基于添加了矩阵扩散的广义泰勒弥散。范围计算与实验相结合以测试模型概念。可以使用一致的运输过程和参数对两个不同的实验配置进行建模。对流扩散和基体扩散的过程被精确地概念化以复制实验结果。在略微吸附钠和流动碘突破曲线上证明了基质扩散的影响。

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