An integrative hierarchical monitoring approach applied at a natural analogue site to monitor CO2 degassing areas

U. Sauer1, Claudia Schütze2, Carsten Leven3, Stefan Schlömer4, Peter Dietrich2
1UFZ- Helmholtz Centre for Environmental Research
2Department Monitoring and Exploration Technologies, UFZ - Helmholtz Centre for Environmental Research, Leipzig, Germany
3Center for Applied Geoscience Hydrogeology, University of Tübingen, Tübingen, Germany
4Department 1.5 Resource Geochemistry, Federal Institute for Geosciences and Natural Resources (BGR), Hannover, Germany

Tóm tắt

Từ khóa


Tài liệu tham khảo

Baldocchi D, Falge E, Gu L et al (2001) A new tool to study the temporal and spatial variability of eco-system scale carbon dioxide, water vapour, and energy flux densities. Am Meteorol Soc 82:2435–2455

Bräuer K, Kämpf H, Koch U, Strauch G (2011) Monthly monitoring of gas and isotope compositions in the free gas phase at degassing locations close to the Nový Kostel focal zone in the western Eger Rift¸ Czech Republic. Chem Geol 290:163–176

Byrdina S, Revil A, Pant SR et al (2009) Dipolar self-potential anomaly associated with carbon dioxide and radon flux at Syabru-Bensi hot springs in central Nepal. J Geophys Res Solid Earth 114:B10101. doi: 10.1029/2008JB006154

Geissler WH, Kämpf H, Kind R et al (2005) Seismic structure and location of a CO2 source in the upper mantle of the western Eger (Ohře) Rift, central Europe. Tectonics 24:TC5001

Harig R, Grutter M, Matz G et al. (2007) Remote measurement of emissions by scanning imaging infrared spectrometry. In: CEM2007, 8th international conference on emissions monitoring, Zürich, extended abstracts 34–39

Hoffmann S, Beilecke T, Werban U et al (2008) Joint application of shear wave seismics and direct push methods in the site investigation of an urban aquifer. Grundwasser 13(2):78–90

Kober R, Hornbruch G, Leven C et al (2009) Evaluation of combined direct-push methods used for aquifer model generation. Ground Water 47(4):536–546

Lamert H, Geistlinger H, Werban U et al (2012) Feasibility of geoelectrical monitoring and multiphase modeling for process understanding of gaseous CO2 injection into a shallow aquifer. Environ Earth Sci 2012. doi: 10.1007/s12665-012-1669-0

Lessoff SC, Schneidewind U, Leven C, Blum P, Dietrich P, Dagan G (2010) Spatial characterization of the hydraulic conductivity using direct-push injection logging. Water Resour Res 46(12). doi: 10.1029/2009WR008949

Leuning R, Etheridge D, Luhar A, Dunse B (2008) Atmospheric monitoring and verification technologies for CO2 geosequestration. Int J Greenh Gas Control 2(3):401–414

Leven C, Weiss H, Vienken V, Dietrich P (2011) Direct Push technologies-an efficient investigation method for subsurface characterization. Grundwasser 16(4):221–234

Lewicki JL, Birkholzer JT, Tsang C-F (2007) Natural and industrial analogues for leakage of CO2 from storage reservoirs: identification of features, events, and processes and lessons learned. Environ Geol 52(3):457–467

Lewicki JL, Hilley GE, Fischer ML et al (2009) Detection of CO2 leakage by eddy covariance during the ZERT project’s CO2 release experiments. Energy Procedia 1(1):2301–2306

Lewicki JL, Hilley GE, Fischer ML et al (2009) Detection of CO2 leakage by eddy covariance during the ZERT project’s CO2 release experiments. Energy Procedia 1:2301–2306

Miles N, Davis K, Wyngaard J (2005) Detecting leaks from CO2 reservoirs using micrometeorological methods. In: Benson SM (ed) Carbon dioxide capture for storage in deep geologic formations-results from the CO2 capture project. Elsevier Sci London, UK, pp 1031–1044

Oldenburg CM, Lewicki JL and Hepple RP (2003) Near-surface monitoring strategies for geologic carbon dioxide storage verification. Lawrence Berkeley National Laboratory Report No. LBNL-54089, Berkeley, CA, USA

Pearce JM (2006) What can we learn from natural analogues? In: Lombardi S et al. (Eds) Advances in the geological storage of carbon dioxide. NATO Science Series, IV. Earth and Environmental Sciences 65:129–140. Springer, Dordrecht, The Netherlands

Pfanz H, Vodnik D, Wittmann C et al (2007) Photosynthetic performance (CO2-compensation point, carboxylation efficiency, and net photosynthesis) of timothy grass is affected by elevated carbon dioxide in post-volcanic mofette areas. J Environ Exp Bot 61:41–48

Rein A, Hoffmann R, Dietrich P (2004) Influence of natural time dependent variations of electrical conductivity on DC resistivity measurements. J Hydrol 285(1–4):215–232

Schütze C, Vienken T, Werban U et al (2012) Joint application of geophysical methods and Direct Push-soil gas surveys for the improved delineation of buried fault zones. J Appl Geophys 82:129–136

Schütze C, Sauer U, Beyer K et al (2012b) Natural analogues – a potential approach for developing reliable monitoring methods to understand subsurface CO2 migration processes. Environ Earth Sci. doi: 10.1007/s12665-012-1701-4

Seto CJ, McRae GJ (2011) Reducing risk in basin scale CO2 sequestration: a framework for integrated monitoring design. Environ Sci Technol 45:845–859

Shuler P and Tang Y (2005) Atmospheric CO2 monitoring systems. In: Benson SM et al. (eds) Carbon dioxide capture for storage in deep geologic formations—results from the CO2 capture project geologic storage of carbon dioxide with monitoring and verification, vol 2, pp 1015–1030

Smeets CJPP, Holzinger R, Vigano I et al (2009) Eddy covariance methane measurements at a Ponderosa pine plantation in California. Atmos Chem Phys 9:8365–8375

Zschornack L, Leven C (2012) Introduction to direct push technologies. In: M. Kästner et al. (eds) Model-driven soil probing, site assessment and evaluation—guidance on technologies. Rome, La Sapienza Publishing House, University of Rome, Italy