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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Multi-scale characterization of porosity in Boom Clay (HADES-level, Mol, Belgium) using a combination of X-ray mu-CT, 2D BIB-SEM and FIB-SEM tomography
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Multi-scale characterization of porosity in Boom Clay (HADES-level, Mol, Belgium) using a combination of X-ray mu-CT, 2D BIB-SEM and FIB-SEM tomography

机译:结合使用X射线mu-CT,二维BIB-SEM和FIB-SEM层析成像技术对动臂粘土中孔隙度进行多尺度表征(HADES级,比利时莫尔)

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摘要

The Oligocene age Boom Clay is a potential host material for radioactive waste disposal in Belgium. To better understand the physical basis of transport mechanisms of radionuclides, we aim to characterize the pore space and its connectivity at nm-scale in 3D. In the present study, X-ray mu-CT and FIB-SEM (focused ion beam scanning electron microscopy) tomography were combined, to investigate the 3D pore space of a Boom Clay sample from the Mol-1 borehole (depth corresponding to the level of the HADES-URF - 'high activity disposal experimental site underground research facility') at the Mol-Dessel research site for radioactive waste disposal (Belgium). BIB-SEM (broad ion beam scanning electron microscopy) was used to bridge the gap in resolutions between X-ray mu-CT and FIB-SEM and to optimize the selection of a relevant spot for FIB-SEM. Pore network extraction (PNE) modeling (Dong and Blunt, 2009 [1]) was used to simplify the results into a set of pore bodies and pore throats, which are suitable for a statistical description. Resulting pore-size distributions are interpreted to be power-law distributed over similar to 6 orders of magnitude, showing the scale-invariance of the pore space. We present a conceptual model of the 3D pore network in Boom Clay. The extracted 3D pore network model can be used to estimate transport properties - in digital rock models. (C) 2015 Elsevier Inc. All rights reserved.
机译:渐新世时期的动臂粘土是比利时放射性废物处置的潜在宿主材料。为了更好地了解放射性核素传输机制的物理基础,我们旨在表征3D中纳米级的孔空间及其连通性。在本研究中,将X射线mu-CT和FIB-SEM(聚焦离子束扫描电子显微镜)层析成像技术结合起来,以研究Mol-1井眼中动臂粘土样品的3D孔隙空间(深度对应于水平(比利时)在Mol-Dessel研究地点的HADES-URF的“高活性处置实验地点地下研究设施”中的位置。使用BIB-SEM(宽离子束扫描电子显微镜)来弥合X射线mu-CT和FIB-SEM之间的分辨率差距,并优化FIB-SEM相关点的选择。孔网提取(PNE)建模(Dong和Blunt,2009 [1])用于将结果简化为一组孔体和孔喉,适用于统计描述。产生的孔径分布被解释为幂律分布,分布类似于6个数量级,显示了孔隙空间的尺度不变性。我们介绍了Boom Clay中3D孔网络的概念模型。提取的3D孔隙网络模型可用于估算数字岩石模型中的输运特性。 (C)2015 Elsevier Inc.保留所有权利。

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