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高分辨率 X 射线 CT 三维成像技术在含铁砂岩建筑石材风化研究中的应用

High-resolution X-ray CT for 3D petrography of ferruginous sandstone for an investigation of building stone decay.

机构信息

Department of Geology and Soil Science-UGCT, Ghent University, Krijgslaan 281/S8, 9000 Ghent, Belgium.

出版信息

Microsc Res Tech. 2011 Nov;74(11):1006-17. doi: 10.1002/jemt.20987. Epub 2011 Mar 4.

Abstract

Diestian ferruginous sandstone has been used as the dominant building stone for monuments in the Hageland, a natural landscape in east-central Belgium. Like all rocks, this stone type is sensitive to weathering. Case hardening was observed in combination with blackening of the exterior parts of the dressed stones. To determine the 3D petrography and to identify the structural differences between the exterior and interior parts, X-ray computed tomography was used in combination with more traditional research techniques like optical microscopy and scanning electron microscopy. The 3D characterization of the ferruginous sandstone was performed with a high-resolution X-ray CT scanner (www.ugct.ugent.be) in combination with the flexible 3D analysis software Morpho+, which provides the necessary petrophysical parameters of the scanned samples in 3D. Besides providing the required 3D parameters like porosity, pore-size distribution, grain size, grain orientation, and surface analysis, the results of the 3D analysis can also be visualized, which enables to understand and interpret the analysis results in a straightforward way. The complementarities between high-quality X-ray CT images and flexible 3D software and its relation with the more traditional microscopical research techniques are opening up new gateways in the study of weathering processes of natural building stones.

摘要

铁染砂岩一直被用作比利时中东部哈格尔兰自然景观中纪念碑的主要建筑石材。与所有岩石一样,这种石材类型对风化作用很敏感。在对加工过的石材的外部进行观察时,发现了表面硬化现象,同时还观察到了黑化现象。为了确定 3D 岩石学特征,并确定外部和内部之间的结构差异,使用了 X 射线计算机断层扫描技术(www.ugct.ugent.be),结合光学显微镜和扫描电子显微镜等传统研究技术。使用高分辨率 X 射线 CT 扫描仪(www.ugct.ugent.be)和灵活的 3D 分析软件 Morpho+ 对铁染砂岩进行了 3D 特征分析,该软件可以提供扫描样品的必要的 3D 岩石物理参数。除了提供必要的 3D 参数,如孔隙率、孔径分布、粒度、晶粒取向和表面分析外,3D 分析的结果还可以可视化,这使得可以以直接的方式理解和解释分析结果。高质量 X 射线 CT 图像与灵活的 3D 软件之间的互补性及其与更传统的微观研究技术之间的关系,为研究天然建筑石材的风化过程开辟了新的途径。

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