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On the Potential of Tomographic Methods when Applied to Compacted Crushed Rock Salt

机译:层析法在压实碎岩盐中的应用潜力

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摘要

Compacted crushed rock salt is considered as potential backfill material in repositories for nuclear waste. To evaluate the sealing properties of this material knowledge concerning the nature of the pore space is of eminent interest. Here, the pore microstructures of crushed rock salt samples with different compaction states were investigated by X-ray (XCT) computed tomography and Focused Ion Beam nanotomography (FIB-nt). Based on these methods the pore microstructures were reconstructed and quantitatively analyzed with respect to porosity, connectivity and percolation properties. Regarding pores with radii > 4μm, porosity differs substantially in the two analyzed samples (φ = 0.01 and 0.10). The pore microstructures are considered isotropic in connectivity and percolation threshold. Using two finite-scaling schemes we found percolation thresholds with critical porosities φ_c > 0.05. Based on statistical considerations, the millimeter size samples that can be analyzed by XCT are large enough to provide a meaningful picture of the pore geometry related to macroporosity. The samples contain also a small fraction (i.e. < 0.01) of pores with radii < 1 μm, which were resolved by FIB-nt. Often these pores can be found along grain boundaries. These pores are granular shaped and are not connected to each other. Typical samples size that can be analyzed by FIB-nt is on the order of tens of microns, which turned out to be too small to provide representative geometric information unless an effort is made that involves several FIB-nt realizations per sample.
机译:压实的碎岩盐被认为是核废料储存库中潜在的回填材料。评估与孔隙空间性质有关的这种材料知识的密封性能非常重要。在这里,通过X射线(XCT)计算机断层扫描和聚焦离子束纳米断层扫描(FIB-nt)研究了具有不同压实状态的碎岩盐样品的孔微结构。基于这些方法,重建了孔的微观结构,并就孔隙度,连通性和渗透特性进行了定量分析。对于半径大于4μm的孔,两个分析样品的孔隙率有很大差异(φ= 0.01和0.10)。孔隙微结构在连通性和渗透阈值方面被认为是各向同性的。使用两种有限尺度方案,我们发现临界孔隙率φ_c> 0.05的渗流阈值。基于统计考虑,可以通过XCT分析的毫米大小的样本足够大,可以提供与大孔隙相关的孔隙几何结构的有意义的图像。样品中还包含一小部分(<0.01)半径<1μm的孔,这些孔通过FIB-nt分离。通常可以沿着晶界发现这些孔。这些孔是颗粒状的并且彼此不连接。可以通过FIB-nt分析的典型样本大小约为数十微米,事实证明它太小了,无法提供代表性的几何信息,除非进行了涉及每个样本多个FIB-nt实现的工作。

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