International audienceEven though the microbiology of various subsurface environments has been investigated for more than 30 a, the microbial diversity of deep argillaceous media is still poorly known. In the context of radioactive waste disposal in clayey formations, the consequence of microbial activity is of concern regarding e.g. the corrosion of metallic components. The purpose of the present work was to characterise the cultivable microbial diversity of different zones of the Toarcian argillite of Tournemire (France) as a preliminary indication regarding the potential of development of microbes in such subterrestrial environments. Cores were drilled in the Excavation Damaged Zone (EDZ) and in the deeper undisturbed zone of the argilli...
The aim of this study was to understand the microbial communities of deep terrestrial subsurface env...
Abstract Background The terrestrial subsurface is home to a significant proportion of the Earth’s mi...
Recent studies reveal that organisms from all three domains of life—Archaea, Bacteria, and eve...
International audienceEven though the microbiology of various subsurface environments has been inves...
International audienceIn the context of a geological disposal of radioactive waste in clayey formati...
International audienceIn 2008, as part of a feasibility study for radioactive waste disposal in deep...
In 2008, as part of a feasibility study for radioactive waste disposal in deep geological formations...
In 2008, as part of a feasibility study for radioactive waste disposal in deep geological formations...
We investigated the microbiology of a shallow subsurface site, the LSBB, located near Avignon. This ...
International audienceOpalinus Clay is a candidate host rock for a high-level radioactive waste repo...
Canada is currently implementing a site selection process to identify a location for a deep geologic...
The subject of this PhD thesis deals with research achieved in the context of the Axis 2 of the law ...
Pyhäsalmi mine in central Finland provides an excellent opportunity to study microbial and geochemic...
The aim of this study was to understand the microbial communities of deep terrestrial subsurface env...
Abstract Background The terrestrial subsurface is home to a significant proportion of the Earth’s mi...
Recent studies reveal that organisms from all three domains of life—Archaea, Bacteria, and eve...
International audienceEven though the microbiology of various subsurface environments has been inves...
International audienceIn the context of a geological disposal of radioactive waste in clayey formati...
International audienceIn 2008, as part of a feasibility study for radioactive waste disposal in deep...
In 2008, as part of a feasibility study for radioactive waste disposal in deep geological formations...
In 2008, as part of a feasibility study for radioactive waste disposal in deep geological formations...
We investigated the microbiology of a shallow subsurface site, the LSBB, located near Avignon. This ...
International audienceOpalinus Clay is a candidate host rock for a high-level radioactive waste repo...
Canada is currently implementing a site selection process to identify a location for a deep geologic...
The subject of this PhD thesis deals with research achieved in the context of the Axis 2 of the law ...
Pyhäsalmi mine in central Finland provides an excellent opportunity to study microbial and geochemic...
The aim of this study was to understand the microbial communities of deep terrestrial subsurface env...
Abstract Background The terrestrial subsurface is home to a significant proportion of the Earth’s mi...
Recent studies reveal that organisms from all three domains of life—Archaea, Bacteria, and eve...