ASNR - Study of the CHM behaviour of sand-rich bentonite-sand mixtures (PsD 26-02) H/F

Structure organisationnelle

CDI, Freelance , France, 75000, France Agroalimentaire / Nutrition animale
Publiée le
27/08/2026
Contrat
CDI, Freelance · Inconnue
Localisation
, France, 75000, France
Taille équipe
Inconnue emp.
Rémunération
Inconnue

Avantages

Formations en ligne
Missions clés Améliorer la compréhension de physico-chimie · Développer des compétences techniques liées au développement de logiciels
Profil recherché Bac +8 (Doctorat) · 0-1 ans d'expérience · Communication
Outils & compétences HM Chemie, PMMA

Le poste en détail

The project is particularly focused on improving the understanding of physico-chemical phenomena to support the development of coupled modelling approaches relevant to the safety assessment of future geological disposal facilities. The reference material will consist of MX80 bentonite–sand mixtures (40/60 dry mass ratio), extended to higher sand contents and different sand characteristics (e.g. grain shape and granulometry). The work will combine advanced coupled HM experiments under controlled hydraulic and chemical boundary conditions, including in situ micro-CT investigations using PMMA cell prototypes, together with state-of-the-art microstructural and mineralogical characterization techniques. These tests will enable the investigation of gas migration mechanisms as well as the impact of chemical perturbations on the swelling behaviour and hydraulic performance of the tested mixtures. The macroscopic investigations will be complemented by microstructural and mineralogical analyses using techniques such as X-ray diffraction (XRD), scanning electron microscopy coupled with EDS (SEM/EDS), and BET surface area measurements. These approaches will provide detailed insight into mineral alteration processes and pore structure evolution during hydration and gas transfer. The project will also include the development of advanced image analysis tools for the segmentation of low-contrast phases (e.g. saturated/desaturated porosity), based on existing methodologies and/or machine-learning approaches.Considering the long duration and complexity of the planned experimental programme, a duration of 24 months is considered necessary to ensure the scientific robustness and completeness of the project. The coupled hydration, chemical perturbation, and gas injection tests on bentonite–sand mixtures require long equilibration and monitoring periods, with each experiment potentially extending over several months depending on the imposed boundary conditions and the targeted hydro-mechanical state. In addition, the project involves the investigation of several mixture configurations with different sand contents, dry densities, and sand characteristics (e.g. granulometry and grain shape), significantly increasing the number of experimental conditions to be explored. Furthermore, the interpretation of the coupled processes relies on the integration of macroscopic observations with detailed microstructural and mineralogical analyses performed before and after testing. The implementation of in situ micro-CT monitoring and advanced image analysis approaches also requires dedicated calibration and optimisation, phases before systematic testing can be performed.