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  3. Experimental characterization of cement–bentonite interaction using core infiltration techniques and 4D computed tomography

Experimental characterization of cement–bentonite interaction using core infiltration techniques and 4D computed tomography

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DOI
10.7892/boris.40021
Publisher DOI
10.1016/j.pce.2013.11.002
Abstract
Deep geological storage of radioactive waste foresees cementitious materials as reinforcement of tunnels and as backfill. Bentonite is proposed to enclose spent fuel drums, and as drift seals. The emplacement of cementitious material next to clay material generates an enormous chemical gradient in pore water composition that drives diffusive solute transport. Laboratory studies and reactive transport modeling predict significant mineral alteration at and near interfaces, mainly resulting in a decrease of porosity in bentonite. The goal of this project is to characterize and quantify the cement/bentonite skin effects spatially and temporally in laboratory experiments. A newly developed mobile X-ray transparent core infiltration device was used, which allows performing X-ray computed tomography (CT) periodically without interrupting a running experiment. A pre-saturated cylindrical MX-80 bentonite sample (1920 kg/m3 average wet density) is subjected to a confining pressure as a constant total pressure boundary condition. The infiltration of a hyperalkaline (pH 13.4), artificial OPC (ordinary Portland cement) pore water into the bentonite plug alters the mineral assemblage over time as an advancing reaction front. The related changes in X-ray attenuation values are related to changes in phase densities, porosity and local bulk density and are tracked over time periodically by non-destructive CT scans.
Date Issued
2014
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Author(s)
Dolder, Florian Dominik  
Institut für Geologie  
Mäder, Urs  
Institut für Geologie  
Jenni, Andreas  
Institut für Geologie  
Schwendener, Nicole  
Institut für Rechtsmedizin, Forensische Medizin und Bildgebung  
Additional Credits
Institut für Geologie  
Institut für Rechtsmedizin, Forensische Medizin und Bildgebung  
Journal
Physics and chemistry of the earth
Publisher
Elsevier
ISSN
1474-7065
Access(Rights)
restricted
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