The cement–clay interaction (CI) experiment was carried out at the Mont Terri rock laboratory to complement the current knowledge on the influence that cementitious materials have on Opalinus Clay (OPA) and bentonite (MX). Drill cores including the interface of OPA, concrete (LAC = low-alkali binder, and OPC = ordinary Portland cement), and MX, which interacted for 4.9 and 10 years, were successfully retrieved after drilling, and detailed analyses were performed to evaluate potential mineralogical changes. The saturated compacted bentonites in core samples were divided into ten slices, profiling bentonite in the direction towards the interface, to evaluate the extent and spatial variation of the mineralogical alteration of bentonite. Regard...
A five-year-old interface between a Low Alkali Concrete (LAC) formulation (CEM III/B containing 66% ...
Strong chemical gradients between clay and concrete porewater lead to diffusive transport across the...
Bentonite is currently proposed as a potential backfill material for sealing high-level radioactive ...
This article has been published in a revised form in Clay Minerals [http://doi.org/10.1180/clm.2018....
Bentonite is a key barrier for the isolation of high-level radioactive waste within Deep Geological ...
Bentonite is one of the more safety-critical components of the engineered barrier system in the disp...
A series of long-term laboratory experiments was started in 1995 to investigate longer-term dissolut...
The Cement–Opalinus Clay Interaction (CI) Experiment at the Mont Terri rock laboratory is a long-ter...
Interactions between concrete and clays are driven by the strong chemical gradients in pore water an...
International audienceSeveral experimental and in situ studies have investigated cementitious materi...
The Engineered Barrier System (EBS) implemented in full-scale experiments are designed to provide an...
Bentonite is one of the more safety-critical components of the engineered barrier system in the disp...
Data concerning potential solid products of the interaction of cement pore fluids with bentonite hav...
The design of engineered barrier systems for high-level radioactive waste isolation requires the use...
Deep geological storage of radioactive waste foresees cementitious materials as reinforcement of tun...
A five-year-old interface between a Low Alkali Concrete (LAC) formulation (CEM III/B containing 66% ...
Strong chemical gradients between clay and concrete porewater lead to diffusive transport across the...
Bentonite is currently proposed as a potential backfill material for sealing high-level radioactive ...
This article has been published in a revised form in Clay Minerals [http://doi.org/10.1180/clm.2018....
Bentonite is a key barrier for the isolation of high-level radioactive waste within Deep Geological ...
Bentonite is one of the more safety-critical components of the engineered barrier system in the disp...
A series of long-term laboratory experiments was started in 1995 to investigate longer-term dissolut...
The Cement–Opalinus Clay Interaction (CI) Experiment at the Mont Terri rock laboratory is a long-ter...
Interactions between concrete and clays are driven by the strong chemical gradients in pore water an...
International audienceSeveral experimental and in situ studies have investigated cementitious materi...
The Engineered Barrier System (EBS) implemented in full-scale experiments are designed to provide an...
Bentonite is one of the more safety-critical components of the engineered barrier system in the disp...
Data concerning potential solid products of the interaction of cement pore fluids with bentonite hav...
The design of engineered barrier systems for high-level radioactive waste isolation requires the use...
Deep geological storage of radioactive waste foresees cementitious materials as reinforcement of tun...
A five-year-old interface between a Low Alkali Concrete (LAC) formulation (CEM III/B containing 66% ...
Strong chemical gradients between clay and concrete porewater lead to diffusive transport across the...
Bentonite is currently proposed as a potential backfill material for sealing high-level radioactive ...