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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Numerical analysis of transport and retardation for cesium in crushed granite using multi-stage advection-dispersion column experiments
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Numerical analysis of transport and retardation for cesium in crushed granite using multi-stage advection-dispersion column experiments

机译:多级对流-弥散柱实验数值分析花岗岩碎屑中铯的迁移和阻滞作用

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摘要

In this study, a systematic analysis of cesium through crushed granite (0.297-0.840 mm) was constructed where synthetic groundwater and seawater were employed as the liquid phase. To build such models, multi-stage advection-dispersion column tests were conducted in order to determine the major transport processes and the calibration/validation of the hypothesized reactive transport models. The experimental breakthrough curves (BTCs) for HTO and Cs were both matched with their corresponding numerical BTCs by adjusting reaction and transport parameters such as forward or backward reaction rate constants (k(f) or k(b)), dispersivity (alpha), and porosity(theta).
机译:在这项研究中,通过使用合成地下水和海水作为液相,通过碎花岗岩(0.297-0.840 mm)对铯进行了系统分析。为了建立这样的模型,进行了多级对流-弥散柱测试,以确定主要的运输过程以及假设的反应性运输模型的校准/验证。 HTO和Cs的实验突破曲线(BTC)都通过调整反应和传输参数(例如正向或反向反应速率常数(k(f)或k(b)),分散性(alpha),和孔隙率(θ)。

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