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TRACER DIFFUSION IN COMPACTED, WATER-SATURATED BENTONITE

机译:致密化水饱和膨润土中的示踪剂扩散

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Compacted Na-bentonite clay barriers, widely used in the isolation of solid-waste landfills and other contaminated sites, have been proposed for a similar use in the disposal of high-level radioactive waste. Molecular diffusion through the pore space in these barriers plays a key role in their performance, thus motivating recent measurements of the apparent diffusion coefficient tensor of water tracers in compacted, water-saturated Na-bentonites. In the present study, we introduce a conceptual model in which the pore space of water-saturated bentonite is divided into 'macropore' and 'interlayer nanopore' compartments. With this model we determine quantitatively the relative contributions of pore-network geometry (expressed as a geometric factor) and of the diffusive behavior of water molecules near montmorillonite basal surfaces (expressed as a constrictivity factor) to the apparent diffusion coefficient tensor. Our model predicts, in agreement with experiment, that the mean principal value of the apparent diffusion coefficient tensor follows a single relationship when plotted against the partial montmorillonite dry density (mass of montmorillonite per combined volume of montmorillonite and pore space). Using a single fitted parameter, the mean principal geometric factor, our model successfully describes this relationship for a broad range of bentonite-water systems, from dilute gel to highly-compacted bentonite with 80% of its pore water in interlayer nanopores.
机译:有人建议将压实的钠膨润土粘土屏障广泛用于隔离固体废物掩埋场和其他受污染的场所,并用于处理高放射性废物。通过这些屏障中的孔隙空间的分子扩散在其性能中起着关键作用,因此推动了最近对压实的水饱和钠膨润土中水示踪剂的表观扩散系数张量的测量。在本研究中,我们介绍了一种概念模型,其中将水饱和膨润土的孔隙空间分为“大孔”和“层间纳米孔”隔室。利用该模型,我们定量确定了孔隙网络几何形状(表示为几何因子)和蒙脱石基表面附近水分子的扩散行为(表示为收缩率)对表观扩散系数张量的相对贡献。我们的模型与实验一致地预测,当相对于部分蒙脱石干密度(蒙脱石的质量/蒙脱石的总体积和孔隙空间)作图时,表观扩散系数张量的平均主值遵循单一关系。使用单个拟合参数(平均主要几何因子),我们的模型成功地描述了广泛的膨润土-水系统的这种关系,从稀凝胶到高度压缩的膨润土,其孔隙水在层间纳米孔中占80%。

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