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首页> 外文期刊>Applied clay science >Anion diffusion in clay-rich sedimentary rocks - A pore network modelling
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Anion diffusion in clay-rich sedimentary rocks - A pore network modelling

机译:富粘土沉积岩中阴离子的扩散-孔隙网络模型

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Mass transport in compacted clays is predominantly by diffusion, making them preferred candidates for barriers to radionuclide transport in future repositories for nuclear waste. Diffusivity of species depends on a number of factors: (1) the physical and chemical properties of the clay, such as the geometry and topology of the pore space and the functional groups on the surface; (2) the environmental system, e.g. pH, ionic strength, temperature and organic matter; (3) the nature of species, e.g. charges, sizes and their interactions. Existing models do not consider these characteristics integrally in diffusion simulations and analysis. In this work, a developed pore network model is used to study the diffusion behaviour of Cl with different ionic strengths. The network is constructed based on experimental pore space information and mineral compositions, and captures the anisotropy and heterogeneity of clays. Opalinus clay is selected for testing the model. The effects of pore size distribution, porosity, cation exchange capacity and surface area on the transport behaviour of anions with different ionic strength are analysed. This improves the understanding of the effects of different factors on the species transport in Opalinus clay. The ionic strength of the pore water is varied between 0.01 and 5 M to evaluate its effect on the diffusion of Cl in clays. It is shown that the model predictions are in good agreement with measured experimental data of Opalinus clay. The agreement demonstrated, both qualitatively and quantitatively, suggests that the proposed approach for integrating known effects on diffusivity is reliable and efficient.
机译:压实粘土中的物质运输主要是通过扩散,使其成为未来核废料处置库中放射性核素运输障碍的首选。物质的扩散性取决于许多因素:(1)粘土的物理和化学性质,例如孔隙空间的几何形状和拓扑以及表面上的官能团; (2)环境系统,例如pH,离子强度,温度和有机物; (3)物种的性质,例如费用,规模及其相互作用。现有模型在扩散模拟和分析中并未整体考虑这些特性。在这项工作中,使用发达的孔网络模型来研究不同离子强度的Cl的扩散行为。该网络是根据实验孔隙空间信息和矿物成分构建的,并捕获了粘土的各向异性和非均质性。选择蛋白石粘土来测试模型。分析了孔径分布,孔隙率,阳离子交换容量和表面积对不同离子强度阴离子的迁移行为的影响。这提高了对不同因素对蛋白石粘土中物种迁移影响的理解。孔隙水的离子强度在0.01到5 M之间变化,以评估其对Cl在粘土中扩散的影响。结果表明,模型预测结果与蛋白石粘土的实测数据吻合良好。该协议在质量和数量上都得到了证明,表明所提出的整合已知扩散系数影响的方法是可靠且有效的。

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