Like bricks of compacted bentonite/sand mixtures, mixtures made up of pellets and powder of bentonite are considered as a possible material to make the sealing plugs used to fill up galleries and ensure long-term watertightness in deep radioactive waste disposal. Pellets/bentonite mixtures have a low permeability, high swelling capacity, good radionuclide retention capability and operational advantages in terms of placement in the galleries. Following a previous in-depth characterisation of bentonite pellets/powder mixture conducted by the same group, an investigation of the water-retention properties and microstructure changes of a bentonite pellet subjected to wetting/drying cycles under free swelling conditions was carried out by means of mercury intrusion porosimetry (MIP) and X-ray microtomography. A complete description of the changes in water content, void ratio and degree of saturation of the pellet was provided. Data showed that the free swelling of the pellet is due to the combined effect of both crack propagation at the macro scale, and the swelling of bentonite grains, governed by hydration mechanisms along the smectite faces at the nano scale. Significant development of a crack network is observed between 38 and 9 MPa. For suctions below 9 MPa, there is a significant decrease of the platelet thickness and an increase in the disorder of the platelet assembly, resulting in the average MIP entrance pore radius increasing to 0·4 μm within the expanded bentonite grains.
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March 2020
Research Article|
March 25 2019
Water-retention properties and microstructure changes of a bentonite pellet upon wetting/drying; application to radioactive waste disposal
Agustín Molinero-Guerra;
Agustín Molinero-Guerra
*Formerly Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France; now Terrasol, Paris, France.
§Institut de Radioprotection et de Sûreté Nucléaire (IRSN), Fontenay-aux-Roses, France.
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Pierre Delage
;
Pierre Delage
†Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France.
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Yu-Jun Cui;
Yu-Jun Cui
‡Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France.
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Nadia Mokni;
Nadia Mokni
§Institut de Radioprotection et de Sûreté Nucléaire (IRSN), Fontenay-aux-Roses, France.
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Anh Minh Tang;
Anh Minh Tang
‡Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France.
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Patrick Aimedieu;
Patrick Aimedieu
‡Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France.
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Frédéric Bernier;
Frédéric Bernier
∥Agence Fédérale de Contrôle Nucléaire (AFCN), Brussels, Belgium.
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Michel Bornert
Michel Bornert
‡Ecole des Ponts ParisTech, Laboratoire Navier/CERMES, Marne La Vallée, France.
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Publisher: Emerald Publishing
Received:
November 22 2017
Accepted:
February 19 2019
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2019 Thomas Telford Ltd
2019
Geotechnique (2020) 70 (3): 199–209.
Article history
Received:
November 22 2017
Accepted:
February 19 2019
Citation
Molinero-Guerra A, Delage P, Cui Y, Mokni N, Tang AM, Aimedieu P, Bernier F, Bornert M (2020), "Water-retention properties and microstructure changes of a bentonite pellet upon wetting/drying; application to radioactive waste disposal". Geotechnique, Vol. 70 No. 3 pp. 199–209, doi: https://doi.org/10.1680/jgeot.17.P.291
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