首页> 外文会议>Symposium on Scientific Basis for Nuclear Waste Management; 20061127-1201; Boston,MA(US) >Characterizing Low-Permeable Granitic Rock From Micrometer to Centimeter Scale: X- ray Microcomputed Tomography, Confocal Laser Scanning Microscopy and ~(14)C-PMMA Method
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Characterizing Low-Permeable Granitic Rock From Micrometer to Centimeter Scale: X- ray Microcomputed Tomography, Confocal Laser Scanning Microscopy and ~(14)C-PMMA Method

机译:从微米到厘米尺度表征低渗透性花岗岩:X射线计算机断层扫描,共聚焦激光扫描显微镜和〜(14)C-PMMA方法

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摘要

First results of combining X-ray microcomputed tomography (μCT), confocal laser-scanning microscopy (CLSM) and ~(14)C-polymethylmethacrylate (~(14)C-PMMA) impregnation techniques in the study of granitic rock samples are reported. Combining results of μCT and CLSM with those of the ~(14)C-PMMA technique, the mineral-specific porosity and morphology of the open pore space, as well as its connectivity, could be analyzed from a micrometer up to a decimeter scale. Three different types of granite were studied. In two cases part of the micro-fissure and pore apertures were found to be in a micrometer scale, but in one case all grain-boundary openings were below the detection limit. Micrometer-scale apertures could be analyzed by CLSM and μCT. The benefit of μCT is that it can also provide the heterogeneous distribution of minerals in 3D. The 2D porosity distributions in the mineral phases, consisting of nanometer-scale pores, could be measured by the ~(14)C-PMMA method together with the micro-fissures. This method does not, however, give the exact pore apertures. The limitations and applicability of the methods are discussed.
机译:报道了在花岗岩岩石样品研究中结合X射线计算机断层扫描(μCT),共聚焦激光扫描显微镜(CLSM)和〜(14)C-聚甲基丙烯酸甲酯(〜(14)C-PMMA)浸渍技术的初步结果。将μCT和CLSM的结果与〜(14)C-PMMA技术的结果相结合,可以从微米到分米的尺度分析开孔空间的矿物比孔隙度和形态及其连通性。研究了三种不同类型的花岗岩。在两种情况下,发现微裂纹和孔的一部分在微米级,但在一种情况下,所有晶界开口均低于检测极限。微米级孔径可通过CLSM和μCT分析。 μCT的好处是它还可以提供3D矿物的异质分布。矿物相中的二维孔隙度分布由纳米级孔隙组成,可以通过〜(14)C-PMMA方法以及微裂缝来测量。但是,该方法无法提供准确的孔孔径。讨论了该方法的局限性和适用性。

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