2020
DOI: 10.1021/acs.energyfuels.0c03225
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Ultrahigh-Resolution 3D Imaging for Quantifying the Pore Nanostructure of Shale and Predicting Gas Transport

Abstract: This is a repository copy of Ultrahigh-Resolution 3D Imaging for Quantifying the Pore Nanostructure of Shale and Predicting Gas Transport.

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Cited by 12 publications
(27 citation statements)
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“…In this study, we perform and present the nano-CT measurements and the supporting MIP and nitrogen adsorption data. The nano-CT data was measured using a ZEISS Ultra Nano-CT instrument at the University of Manchester (as outlined in [23]). Measurements were made on a cuboid sample (Figure 2b) with a side length of approximately 25 µm and a voxel size of approximately 64x64x64 nm 3 .…”
Section: Multi-scale 2d/3d Imaging Techniquesmentioning
confidence: 99%
See 4 more Smart Citations
“…In this study, we perform and present the nano-CT measurements and the supporting MIP and nitrogen adsorption data. The nano-CT data was measured using a ZEISS Ultra Nano-CT instrument at the University of Manchester (as outlined in [23]). Measurements were made on a cuboid sample (Figure 2b) with a side length of approximately 25 µm and a voxel size of approximately 64x64x64 nm 3 .…”
Section: Multi-scale 2d/3d Imaging Techniquesmentioning
confidence: 99%
“…The data from all 2D/3D imaging techniques were analysed using a protocol of image processing techniques such as filtering, thresholding, segmentation and quantification [17,23]. This process was carried out using Avizo®9.0 software and resulted in a wide range of numerical measurements including pore size, pore volume, pore surface area, and pore dimensions, for each recognised pore.…”
Section: D/3d Imaging Analysismentioning
confidence: 99%
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