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Impact of sand content on solute diffusion in Opalinus Clay

机译:含沙量对蛋白石粘土中溶质扩散的影响

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The mesostructure (micro to millimeter scale) of clay rocks was considered as a two-component mixture consisting of impermeable non-clayey sand grains embedded in a permeable clay matrix. Provided that representative diffusion properties can be defined, the clay matrix can be treated as a continuum. Under these conditions diffusion at larger scales will depend on geometric properties of the mesostructure. The objective of this study, then, is to analyze geometric parameters, which control diffusion at larger scales. In a first step a set of different clay matrix mesostructures were reconstructed on the base of synchotron X-ray computed microtomography applied to clay rock samples from northern Switzerland (e.g. Opalinus Clay). In a second step mesostructural effects on diffusion were quantified by applying diffusion simulations to reconstructed mesostructures. Further analysis revealed that constrictivity is the most dominant parameter, which controls diffusion on the millimeter scale in Opalinus Clay. Regarding diffusion, the mesostructure of the clay matrix is near isotropic. Hence, the reason for anisotropic diffusion in Opalinus Clay must be searched on the nanometer to micrometer scale and it is caused by anisotropic pore path tortuosity related to shape preferred orientation of clay platelets. (C) 2015 Elsevier B.V. All rights reserved.
机译:粘土岩石的介观结构(微米到毫米级)被认为是由嵌入渗透性粘土基质中的非渗透性非粘土砂粒组成的两组分混合物。只要可以定义代表性的扩散特性,就可以将粘土基体视为连续体。在这些条件下,更大范围的扩散将取决于介观结构的几何特性。因此,本研究的目的是分析几何参数,以控制更大范围的扩散。第一步,在应用于瑞士北部粘土岩石样品(例如Opalinus Clay)的同步加速器X射线计算机显微断层照相术的基础上,重建了一组不同的粘土基质介观结构。在第二步骤中,通过将扩散模拟应用于重构的介观结构来量化对扩散的介观结构影响。进一步的分析表明,收缩率是最主要的参数,它控制Opalinus粘土在毫米级的扩散。关于扩散,粘土基质的介孔结构接近各向同性。因此,必须在纳米到微米尺度上寻找在Opalinus粘土中各向异性扩散的原因,这是由与粘土薄片的形状优选取向相关的各向异性孔隙路径曲折引起的。 (C)2015 Elsevier B.V.保留所有权利。

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