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  • Claystone  (1)
  • Geoecology/Natural Processes  (1)
  • 2020-2024  (2)
  • 1
    Publication Date: 2024-03-05
    Description: Opalinus Clay is considered a potential host rock for radioactive waste disposal. The Jurassic claystone formation is composed of several facies and subfacies types, which are characterized by varying amounts of quartz, carbonates (cements and fossils) and clay minerals. To provide samples for ongoing experimental and numerical studies, a complete core section was drilled in the Mont Terri rock laboratory. The lithological and structural variability (including tectonic fault structures) from borehole BAD-2 was investigated using a multidisciplinary approach including high-resolution geoelectric in situ borehole measurements, mineralogical/geochemical and (micro)structural analyses. The lithological–compositional variability was captured by successfully applying a modified subfacies approach, which is independently confirmed by the geochemical data and ERT (Electrical Resistivity Tomography) measurements. The variability on the cm to dm scale perpendicular to bedding can be determined based on the mean resistivity and variation of amplitude. In particular, the facies transitions could be precisely located. The new results suggest that both shaly facies types form the homogenous part of the investigated section, whereas the sandy facies and especially the carbonate-rich sandy facies represent the more heterogeneous lithofacies types of the Opalinus Clay. The varying resistivity can be attributed to differences in clay mineral and carbonate content. Regarding the structural variability, brittle faults were observed with varying frequency throughout the investigated section. Most fault planes occur in the shaly facies types, some of them concentrate along heterogeneities on the subfacies scale. The striking reproducibility of the measurements and observations was confirmed by a comparison with boreholes drilled in parallel, indicating a rather low compositional–structural variability parallel to bedding. The applied multidisciplinary approach is well suited to depict the vertical and lateral variability of a claystone formation, allowing an assessment of the degree of homogeneity/heterogeneity based on the subfacies concept.
    Description: Bundesministerium für Bildung und Forschung http://dx.doi.org/10.13039/501100002347
    Description: Bundesministerium für Wirtschaft und Energie http://dx.doi.org/10.13039/501100006360
    Description: Bundesanstalt für Geowissenschaften und Rohstoffe (BGR) (4230)
    Keywords: ddc:552.5 ; Claystone ; Electrical resistivity tomography ; Facies types ; Microstructure ; Mineralogical–geochemical analyzes ; Mont Terri rock laboratory
    Language: English
    Type: doc-type:article
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  • 2
    Publication Date: 2023-06-21
    Description: Grundwasser ist weltweit ein Schlüsselelement der Wasserversorgung, insbesondere der Trinkwasserversorgung. Die Bundesanstalt für Geowissenschaften und Rohstoffe (BGR) ist seit Jahrzehnten in einschlägigen internationalen Projekten engagiert. Im Licht der Herausforderungen des „Global Change“ und basierend auf der jahrzehntelangen Erfahrung bei der Erkundung, Bewertung und Nutzung von Grundwasservorkommen hat die BGR ihre Handlungsschwerpunkte strategisch ausgerichtet. In den kommenden Jahren werden wir uns in Bezug auf das Grundwasser insbesondere mit den Themen Versorgungsicherheit sowie Dynamik und Stoffumsatz von Grundwasserfließsystemen befassen – auch in Verbindung mit den dafür erforderlichen Flächen- und Rauminformationen. In der internationalen Zusammenarbeit stehen beim Thema Versorgungssicherheit die Entwicklung von Erkundungs- und Nutzungsstrategien für aride Gebiete und Küstenzonen sowie die Methodenentwicklung von Prognosewerkzeugen im Vordergrund. Die weltweit dauerhafte Sicherung der Lebensgrundlage Grundwasser kann nur partnerschaftlich gelingen.
    Description: Bundesanstalt für Geowissenschaften und Rohstoffe (BGR) (4230)
    Keywords: ddc:551.49 ; Hydrogeology ; Hydrology/Water Resources ; Water Quality/Water Pollution ; Geoengineering, Foundations, Hydraulics ; Soil Science & Conservation ; Geoecology/Natural Processes
    Language: German
    Type: doc-type:article
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