Details zur Publikation

Kategorie Textpublikation
Referenztyp Zeitschriften
DOI 10.1007/s12665-012-1669-0
Volltext Shareable Link
Titel (primär) Feasibility of geoelectrical monitoring and multiphase modeling for process understanding of gaseous CO2 injection into a shallow aquifer
Autor Lamert, H.; Geistlinger, H.; Werban, U. ORCID logo ; Schütze, C.; Peter, A.; Hornbruch, G.; Schulz, A.; Pohlert, M.; Kalia, S.; Beyer, M.; Großmann, J.; Dahmke, A.; Dietrich, P. ORCID logo
Quelle Environmental Earth Sciences
Erscheinungsjahr 2012
Department ISOBIO; MET; BOPHY
Band/Volume 67
Heft 2
Seite von 447
Seite bis 462
Sprache englisch
Keywords Carbon sequestration; CO2 leakage; Geoelectrical monitoring; Multiphase modeling; carbon sequestration; CO2 leakage; geoelectrical monitoring; multiphase modeling
Abstract

Potential pathways in the subsurface may allow upwardly migrating gaseous CO2 from deep geological storage formations to be released into near surface aquifers. Consequently, the availability of adequate methods for monitoring potential CO2 releases in both deep geological formations and the shallow subsurface is a prerequisite for the deployment of Carbon Capture and Storage technology. Geoelectrical surveys are carried out for monitoring a small-scale and temporally limited CO2 injection experiment in a pristine shallow aquifer system. Additionally, the feasibility of multiphase modeling was tested in order to describe both complex non-linear multiphase flow processes and the electrical behavior of partially saturated heterogeneous porous media. The suitability of geoelectrical methods for monitoring injected CO2 and geochemically altered groundwater was proven. At the test site, geoelectrical measurements reveal significant variations in electrical conductivity in the order of 15–30 %. However, site-specific conditions (e.g., geological settings, groundwater composition) significantly influence variations in subsurface electrical conductivity and consequently, the feasibility of geoelectrical monitoring. The monitoring results provided initial information concerning gaseous CO2 migration and accumulation processes. Geoelectrical monitoring, in combination with multiphase modeling, was identified as a useful tool for understanding gas phase migration and mass transfer processes that occur due to CO2 intrusions in shallow aquifer systems.
dauerhafte UFZ-Verlinkung https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=12317
Lamert, H., Geistlinger, H., Werban, U., Schütze, C., Peter, A., Hornbruch, G., Schulz, A., Pohlert, M., Kalia, S., Beyer, M., Großmann, J., Dahmke, A., Dietrich, P. (2012):
Feasibility of geoelectrical monitoring and multiphase modeling for process understanding of gaseous CO2 injection into a shallow aquifer
Environ. Earth Sci. 67 (2), 447 - 462 10.1007/s12665-012-1669-0