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In-Situ Nano-Scale Imaging of Thermal Effects on Microstructure Evolution in Mudstones

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ESRF Portal2028-01-01 更新2026-04-23 收录
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https://doi.esrf.fr/10.15151/ESRF-ES-2008878007
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Mudstones are considered an ideal candidate for hosting a Geological Disposal Facility (GDF) due to their exceptionally low porosity and permeability, coupled with a high buffering capacity. However, the integrity of these properties can be compromised by the heat generated from radioactive decay. This heat may cause organic matter within the mudstones to mature, potentially creating new pores, and altering the mechanical properties of the clay matrix. This project, to our knowledge, will be the first time to comprehensively assess and quantify the effects of heat on the pore system with in-situ heating at nano-scale, together with Digital Volume Correlation (DVC) to reveal the nano-scale evolution of mechanical properties of mudstones over temperature. The results will enhance theoretical understanding on mudstone behaviour with increased temperatures for earth history and provide vital data for the engineering design and long-term prediction of many other subsurface applications.
提供机构:
Brazilian Synchroton Light National Lab-LNLS, Researcn Centre Energy & Materials, P.O. Box 6192, 13083970, Campinas, BR; University of Manchester, Department of Chemical Engineering, Nancy Rothwell Building, Booth Street East Manchester, M13 9QS, Manchester, GB; University of Manchester, School of Chemical Engineering & Analytical, Science School of Chemistry PO Box 88 Sackville Street, M60 1QD, Manchester, GB; University of Manchester, Earth and Environmental Science , Williamson Building Oxford Road, M13 9PL, Manchester, GB
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2028-01-01
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