Publikationen
Bedoya-Gonzalez, D. A., Hilberg, S., Kessler, T., Schafmeister, M.-T. & Rinder, T. (in prep.): Modelling chemical and temporal evolution of coal mine drainage form the Ibbenbüren Westfield through a reactive transport model (TOUGH).
Bedoya-Gonzalez, D. A., Hilberg, S., Kessler, T., Schafmeister, M.-T. & Rinder, T. (submitted): Application of a Double Continuum model to describe reactive transport in disrupted coal mining areas: a case study of the Ibbenbüren Westfield, Germany. Paper presented at the 28. Tagung der Fachsektion Hydrogeologie e.V. in der DGGV: Grundwasser-Klima-Gesellschaft, Jena.
Bedoya-Gonzalez, D. A., Kessler, T., Rinder, T. & Schafmeister, M.-T. (in prep.): A Double continuum model for characterizing groundwater flow in mechanically modified hard coal mines: Case study of the Ibbenbüren Westfield mine, Germany.
Bedoya-Gonzalez, D., Hilberg, S., Redhammer, G. & Rinder, T. (2021): A Petrographic Investigation of the Carboniferous Sequence from the Ibbenbüren Mine: Tracing the Origin of the Coal Mine Drainage. Minerals. 11, 5, doi:10.3390/min11050483.
Bedoya-Gonzalez, D. A., Kessler, T. & Schafmeister, M.-T. (2021): Employment of A Double Continuum Model to Characterize Groundwater Flow In Underground Post-Mining Setups: Case Study Of The Ibbenbüren Westfield. Paper presented at the Proceedings of the 14th International Mine Water Association Congress (IMWA), Wales.
Bedoya Gonzalez, D. A., Rinder, T. & Hilberg, S. (2021): Signs of water-rock interaction in fractured coalmine overburdens – First steps for setting a double-continuum reactive transport model, Goldschmidt Conference 2021.
Burghardt, D., Coldewey, W. G., Melchers, Ch., Messer, J., Paul, M., Walter, T., Wesche, D., Westermann, S., Wieber, G., Wisotzky, F. & Wolkersdorfer, Ch. (2017): Glossar Bergmännische Wasserwirtschaft. – 79 p., Neustadt/Wstr. (Fachsektion Hydrogeologie in der DGGV).
Campos, J. A., Barbosa, P. M., Brandão, L., Camargo de Azevedo, A., Casanova, M., Cord, A. G., N.; Giese, E. C., Händel, F., Jager, N., Jessen, G. H., Lepenies, R., Marchezini, V., Pujoni, D., Salma, A., Sánchez, A. S., Schierz, A., Stemke, M., Ussath, M., Val, P., Whaley-Martin, K., Yamamoto, F. Y. & Zorzal-Almeida, S. (2019): A new vision of sustainable management in mining and post-mining landscapes. – 1—28 p., Halle (Saale) (Deutsche Akademie der Naturforscher Leopoldina e.V. Nationale Akademie der Wissenschaften).
Genth, T., Sessing, J., Jasnowski-Peters, H., Dölling, B. & Melchers, Ch. (2021): Erste Ergebnisse der Sedimentanalyse der Emscher-Formation in der Bohrung Waltrop 1 unter besonderer Berücksichtigung der Tonmineralogie. – scriptum online, 19:1—21.
Genth, T., Sessing, J., Jasnowski-Peters, H. & Melchers, Ch. (2021): Clay mineral quantification in the Upper Cretaceous Emscher formation – evaluating a potential hydraulic barrier during mine water rebound in the Ruhr District. Paper presented at the GeoKarlsruhe, Karlsruhe.
Hilberg, S., Meerwald-Stadler, S. (in prep.): Interaktives Lernspiel Grubenwasser – digitales Unterrichstmaterial für die Oberstufe zum Thema Steinkohlebergbau, Grubenwasser und Ewigkeitsaufgaben.
Jasnowski-Peters, H., Teichert, B. M. A., Genth, T., Rose, L. & Melchers, Ch. (2021): Mine water rebound in German hard coal mines – geochemical and petrophysical data support for an integrative monitoring plan. Paper presented at the GeoKarlsruhe, Karlsruhe.
Jasnowski-Peters, H. & Melchers, Ch. (2021): Natural Tracers For Mine Water Fingerprinting – A First Step To A Hydrogeochemical Monitoring Plan For Risk Assessment During Mine Water Rebound In The Ruhr District Area, Germany. Paper presented at the International Mine Water Association Congress, Wales.
Jasnowski-Peters, H. & Melchers, Ch. (in prep.): Deep regional aquifer systems of the Ruhr District and the Munsterland Basin, a review of groundwater hydrogeochemistry in relation to hard coal mine waters. (to be submitted to Applied Geochemistry/Chemical Geology).
Jasnowski-Peters, H., Teichert, B. M. A. & Melchers, Ch. (submitted): Wissenschaftliche Begleitung des Grubenwasseranstiegs in den deutschen Steinkohlerevieren – hydrogeochemisches Monitoring, natürliche Tracerstudien und in-situ Prozessverständnis. Paper presented at the FH-DGGV Tagung Jena 2022, Jena.
Kessler, T., Bedoya-Gonzalez, D. A. & Schafmeister, M.-T. (2020): Reactive Transport Modelling Within the Hydraulic Framework of Failure Zones Due to Underground Mining. Paper presented at the 27. Tagung der Fachsektion Hydrogeologie e.V. in der DGGV: Grundwasser und Flusseinzugsgebiete: Prozesse, Daten, Modelle, Leipzig.
Kessler, T., Eckart, M. & Schafmeister, M.-T. (2019): Numerische Ansätze für die Diskretisierung und hydraulische Simulation von untertägigen Bergwerksflutungen. – Proceedings 1. Fachkonferenz GeoMAP. – S. 47—52, Freiberg.
Kessler, T., Kories, H. & Schafmeister, M.-T. (in prep.): Experiences with quantitative numerical modelling of groundwater rebound in abandoned coal mines.
Kessler, T., Kories, H. & Schafmeister, M.-T. (submitted): Modelling mine water rebound – benefits and drawbacks of two common approaches. Paper presented at the 28. Tagung der Fachsektion Hydrogeologie e.V. in der DGGV: Grundwasser-Klima-Gesellschaft, Jena.
Kessler, T., Mugova, E., Jasnowski-Peters, H., Rinder, T., Stemke, M., Wolkersdorfer, Ch., Hilberg, S., Melchers, Ch., Struckmeier, W., Wieber, G. & Schafmeister, M.-T. (2020): Grundwasser in ehemaligen deutschen Steinkohlenrevieren – ein wissenschaftlicher Blickwinkel auf Grubenflutungen. – Grundwasser, 25(4):259–272, 2 Abb., 1 Tab.; doi:10.1007/s00767-020-00460-0.
Kessler, T. & Schafmeister, M.-T. (2021): Finite-element modelling approach to study flow processes during groundwater rebound in abandoned underground hard coal mines. Paper presented at the Proceedings of the 14th International Mine Water Association Congress (IMWA), Wales.
Mashishi, D. T., Wolkersdorfer, Ch. & Coetzee, H. (2022): The Whitehill Formation as a Natural Geochemical Analogue to the Witwatersrand Basin’s Mine Water Issues, South Africa. – Environmental Science and Pollution Research International, 9 fig., 7 tab, doi:10.1007/s11356-021-17699-6.
Melchers, Ch. & Goerke-Mallet, P. (2018): Nachbergbau: Aufgaben und Perspektiven. – In: Mayer, G., et al. (eds): 18. Altbergbau-Kolloquium. 8. bis 10. November 2018, IMG PAN, Bergwerk Wieliczka. – S. 266—279, Nossen (Wagner).
More, K. S. & Wolkersdorfer, Ch. (2019): Disruptive Technologies in Mine Water Management – The Future. Paper presented at the Mine Water – Technological and Ecological Challenges (IMWA 2019), Perm, Russia. – S. 597–601; Perm, Russia (Perm State University).
More, K. S., Wolkersdorfer, Ch., Kang, N. & Elmaghraby, A. S. (2020): Automated Measurement Systems in Mine Water Management and Mine Workings – A Review of Potential Methods. – Water Resour. Ind.:Article 100136, 5 Abb.; doi:10.1016/j.wri.2020.100136.
Mugova, E. & Wolkersdorfer, Ch. (2018): A Review of Mine Water Stratification. – In: Meier, G., et al. (eds): 18. Altbergbau-Kolloquium – Tagungsband. – S. 125—132, 2 Abb.; Nossen (Wagner).
Mugova, E. & Wolkersdorfer, Ch. (2019): Dichteschichtung als potentielle In-situ-Behandlung von Grubenwasser in gefluteten Untertagebergwerken. Paper presented at the Bergbau, Energie und Rohstoffe 2019, Bochum, 2019-09-11 – 13. – S. 155—159; Clausthal-Zellerfeld (Technische Hochschule Georg Agricola, Deutscher Markscheider-Verein e.V.).
Mugova, E. & Wolkersdorfer, Ch. (2019): Stratification in Flooded Underground Mines – State of Knowledge and Further Research Ideas. Paper presented at the Mine Water – Technological and Ecological Challenges (IMWA 2019), Perm, Russia. – S. 40–44; Perm, Russia (Perm State University).
Mugova, E. & Wolkersdorfer, Ch. (2020): Stratification in Flooded Underground Mines – State of Knowledge and Further Research Ideas. – In: Kretschmann, J., Goerke-Mallet, P. & Melchers, Ch. (eds): Done for Good 2.0 – Results in Post-Mining Research. – S. 205—210, 1 Abb.; Bochum (Technische Hochschule Georg Agricola).
Mugova, E. & Wolkersdorfer, Ch. (2022): Density Stratification and Double-Diffusive Convection in Mine Pools of Flooded Underground Mines – A Review. – Water Res., 6 fig., 2 tab.; doi:10.1016/j.watres.2021.118033.
Mugova, E. & Wolkersdorfer, Ch. (2022): Identifying Potential Groundwater Contamination by Mining Influenced Water (MIW) using Flow Measurements in a Sub-Catchment of the “Cradle of Humankind” World Heritage Site, South Africa. – Environ. Earth Sci. 81(104): 1–12, 10 Abb., 5 Tab; doi:10.1007/s12665-022-10224-z.
Mugova, E. & Wolkersdorfer, Ch. (in prep.): Agricola Mine Model – Research on the analog mine model in combination with numerical modeling.
Mugova, E. & Wolkersdorfer, Ch. (in prep.): Causal relationships between stratification in different flooded underground mines and its implementation as a mitigation strategy.
Mugova, E. & Wolkersdorfer, Ch. (in prep.): Nachhaltige Flutungsniveaus in stillgelegten Untertagebergwerken.
Mugova, E. & Wolkersdorfer, Ch. (in prep.): New insights on the first flush – the mine as a chemical reactor.
Mugova, E. & Wolkersdorfer, Ch. (in prep.): Tracer studies in a flooded mine pool for investigating geothermal and in-situ remediation potentials.
Ngoubeyou, P. S. K., Wolkersdorfer, Ch., Ndibewu, P. P. & Augustyn, W. (2022): Toxicity of Polychlorinated Biphenyls in Aquatic Environments – A Review. – Aquatic Toxicology, 2 Abb., doi:10.1016/j.aquatox.2022.106284.
Ottenjann, M.-B., Kons, S., Meßer, J., Werner, F., Getta, M. & Göbel, P. (2022): Rekonstruktion des Druckpotenzials für den unteren Grundwasserleiter im Münsterländer Kreidebecken im Falle eines ungehinderten Grubenwasseranstiegs im Grundgebirge. – Grundwasser, 27(1):15–28; doi:10.1007/s00767-021-00506-x.
Pohl, S. & Wieber, G. (2019): Erdwärmeerschließung aus Altbergbau in Bad Ems. – bbr 04-2019. – S. 68—72, Bonn.
Rinder, T. & Hilberg, S. (2018): Origin of mine water and groundwater from the Ibbenbüren coalfield, North Rhine- Westphalia, Germany –interpretation of Sulfur, Oxygen and Hydrogen isotopic ratios. Paper presented at the 16th stable isotope network Austria (SINA) meeting.
Rinder, T. (2020): The chemical evolution of coal mine drainage and groundwater from a mining region in Northern Germany – A multi elemental and isotope approach. Paper presented at the Erdwissenschaftliches Kolloquium, Graz am 20.10.2020, Graz.
Rinder, T., Dietzel, M., Stammeier, J., Leis, A., Bedoya-Gonzalez, D. & Hilberg, S. (2020): Geochemistry of coal mine drainage, groundwater, and brines from Ibbenbüren mine, Germany: A coupled elemental-isotopic approach. – Applied Geochemistry, 121:104693, doi:10.1016/j.apgeochem.2020.104693.
Rinder, T. & Hilberg, S. (2019): Hydrochemistry and isotope geochemistry of coalmine drainage from Ibbenbüren coalfield, Germany. – Goldschmidt Abstracts 2019. – S. 2835.
Rinder, T., Hilberg, S. & Bedoya-Gonzalez, D.A. (2020): Eine hydrochemische Systemanalyse zur Herkunft und Qualität des Grubenwasses im Ibbenbürener Ostfeld. Grundwasser und Flusseinzugsgebiete: Prozesse, Daten, Modelle, Leipzig: Fachsektion Hydrogeologie e.V. in der DGGV e.V. S. 186-187
Rinder, T. & Hilberg, S. (2021): Tracing The Water – Rock Interaction In The Ibbenbüren Mine – Towards A Reactive Transport Model For Coal Mine Drainage, IMWA 2021 – International mine water association congress 2021
Rinder, T. & Hilberg, S. (subm.): Testing coal mine drainage sludge from the Ibbenbüren colliery for the sorption of toxic metals. Grundwasser-Klima-Gesellschaft: Fachsektion Hydrogeologie e. V.in der DGGV e.V.
Rinder, T., Yousefi, N. & Hilberg, S. (in prep.): Characterisation of coal mine drainage from the spoil tip of a Bavarian pitch coal mine.
Rinder, T. & Hilberg, S. (in prep.): Reuse of coal mine drainage sludge from the Ibbenbüren coal field as an adsorbent for groundwater remediation.
Schneider, P. & Wolkersdorfer, Ch. (2021): Dimensions of water management in the extractive industries. – In: Davis, C. & Rosenblum, E. (eds): Sustainable Industrial Water Use: Perspectives, Incentives, and Tools. – S. 73—87, 13 Abb.; London (IWA Publishing), doi:10.2166/9781789060676_0073.
Stemke, M. & Wieber, G. (in press): Closure of German Hard Coal Mines – Effects and legal Aspects of Mine Flooding. – Mine Water and the Environment; doi:10.1007/s10230-021-00842-7.
Stemke, M. & Wieber, G. (2021): Utilisation of mine water from abandoned mines – example “anthracite mine Ibbenbüren”. Paper presented at the Mine Water Management for Future Generations, Cymru, Wales.
Stemke, M. & Wieber, G. (in prep.): Bestimmung der Hintergrundwerte des Tiefenwassers im Ibbenbürener Steinkohlenrevier.
Strosnider, W. H. J., Hugo, J., Shepherd, N. L., Holzbauer-Schweitzer, B. K., Hervé-Fernández, P., Wolkersdorfer, Ch. & Nairn, R. W. (2020): A Snapshot of Coal Mine Drainage Discharge Limits for Conductivity, Sulfate, and Manganese across the Developed World. – Mine Water Environ., 39(2):165–172, 4 Abb., 1 Tab.; doi:10.1007/s10230-020-00669-8.
Westerman, S. & Melchers, Ch. (2018): Scientific basics of mine water rebound. Paper presented at the Problemy nedropol’zovanija. Meždunarodnyj Forum-Konkurs Molodych Učenych, 18—20 aprel’ja 2018 g. Sbornik naučnych trudov. Čast‘ II. Sankt-Peterburg. (Sankt-Peterburgskij Gornyj Universitet).
Westerman, S., Rudakov, D. V., C., W. & Melchers, Ch. (2019): Design of Experiments. Ein systemanalytischer Ansatz für ein besseres Verständnis von Grubenwasseranstiegsprozessen in Untertagebergwerken. – In: Mayer, G., Benndorf, J., Löbel, K.-H., Butscher, C., Tondera, D. & Busch, W. (eds): 19. Altbergbaukolloquium. 7. bis 9. November 2019, Montanuniversität Leoben. – S. 81—93, Nossen (Wagner).
Westermann, S., Dogan, T., Reker, B., Goerke-Mallet, P., Wolkersdorfer, Ch. & Melchers, Ch. (2017): Evaluation of mine water rebound processes in European Coal Mine Districts to enhance the understanding of hydraulic, hydrochemical and geomechanical processes. – In: Wolkersdorfer, Ch., Sartz, L., Sillanpää, M. & Häkkinen, A. (eds): IMWA 2017 – Mine Water & Circular Economy I. – S. 147—153, 2 Abb.; Lappeenranta (Lappeenranta University of Technology).
Westermann, S., Dogan, T., Reker, B., Goerke-Mallet, P., Wolkersdorfer, Ch. & Melchers, Ch. (2020): Evaluation of Mine Water Rebound Processes in European Coal Mine Districts to Enhance the Understanding of Hydraulic, Hydrochemical and Geochemical Processes. – In: Kretschmann, J., Goerke-Mallet, P. & Melchers, Ch. (eds): Done for Good 2.0 – Results in Post-Mining Research. – S. 159—166, 2 Abb.; Bochum (Technische Hochschule Georg Agricola).
Westermann, S., Goerke-Mallet, P., Reker, B., Dogan, T., Wolkersdorfer, Ch. & Melchers, Ch. (2017): Aus Erfahrungen lernen: Evaluierung von Grubenwasseranstiegsprozessen zur Verbesserung zukünftiger Prognosen. – 17. Altbergbau-Kolloquium – Tagungsband. – S. 259—273, 6 Abb., 1 Tab.; Nossen (Wagner).
Westermann, S., Reker, B., Goerke-Mallet, P., Wolkersdorfer, Ch. & Melchers, Ch. (2020): Hydraulics of Underground Mine Flooding – Optimization of Predication and Monitoring Procedures. – In: Kretschmann, J., Goerke-Mallet, P. & Melchers, Ch. (eds): Done for Good 2.0 – Results in Post-Mining Research. – S. 221—235, 7 Abb., 1 Tab.; Bochum (Technische Hochschule Georg Agricola).
Wieber, G. (2018): Hydrogeologische Fragestellungen in bergrechtlichen Genehmigungsverfahren. – Bochumer geowissenschaftliche Arbeiten, H. 24: Grundwasser im Umfeld von Bergbau, Energie und urbanen Räumen. – S. 37—38, Bochum.
Wieber, G. (2019): Erzbergbau und Bergbaufolgelandschaften an der Unteren Lahn, Rheinisches Schiefergebirge. – Jber. Mitt. oberhein. Geol. Ver. 101. – S. 251—283, Stuttgart, doi:10.1127/jmogv/101/0011.
Wieber, G. (2020): Hydrogeologie und Wasserwirtschaft der Grubenwässer des ehemaligen Buntmetallerzbergbaus im Hunsrück, Rheinisches Schiefergebirge. – Mainzer geowiss. Mitt., 48:225—252, 11 Abb., 6 Tab.
Wieber, G. (in prep.): Geothermal utilisation of mine water from abandoned mines – example “anthracite mine Ibbenbüren”, Germany.
Wieber, G. (in prep.): Kritische Rohstoffe in Grubenwässern des Steinkohlebergbaus: Anomalien und Rückgewinnungsmöglichkeiten – Lithium und andere.
Wieber, G., Henn, R., Stemke, M. & Quensel, P. (in prep.): Hintergrundwerte der Grubenwässer des Steinkohlebergbaus im Saarland, Ibbenbüren und Ruhrrevier.
Wieber, G., Lang, R. & Mays, M. (2021): Hydrogeologie und Wasserwirtschaft der Grubenwässer des ehemaligen Steinkohlebergbaus in Rheinland-Pfalz. – Mainzer geowiss. Mitt., 49:221—238.
Wieber, G. & Scheffer, E. (2019): Die Hydrogeologie der ehemaligen Braunkohlegrube Alexandria im Westerwaldrevier, Rheinisches Schiefergebirge. – Mainzer geowiss. Mitt, 47:147—162.
Wieber, G., Scheffer, E. & Stemke, M. (2019): Grubenwässer des ehemaligen Braunkohlebergbaus im Westerwaldrevier. – In: Mayer, G., Benndorf, J., Löbel, K.-H., Butscher, C., Tondera, D. & Busch, W. (eds): 19. Altbergbaukolloquium. 7. bis 9. November 2019, Montanuniversität Leoben., Nossen (Wagner).
Wieber, G. & Stemke, M. M. (2019): Pump Tests In Deep Ore Mine Shafts For The Evaluation Of A Possible Geothermal Use. Paper presented at the Mine Water – Technological and Ecological Challenges (IMWA 2019), Perm, Russia. – S. 375–378; Perm, Russia (Perm State University).
Wieber, G. & Stemke, M. (2021): Grundlagen des Wasseranstiegs in stillgelegten deutschen Steinkohlegruben. – bbr, 04-2021:48—52.
Wieber, G. & Stemke, M. (accepted): Kritischer Rohstoff Lithium: Gehalte und Potenziale in den Grubenwässern des stillgelegten Anthrazitbergwerkes Ibbenbüren. – scriptum online:15,1—28.
Wieber, G., Stemke, M., Wonik, T., Enzmann, F. & Kersten, M. (2019): Stratification Dynamics and Geothermal Potential of a Deep Shaft in the Flooded Wolf Mine, Siegerland/Germany. – Mine Water Environ., 38(2):325—334, doi:10.1007/s10230-019-00602-8.
Wolkersdorfer, Ch. (2017): Mine Water Hydrodynamics, Stratification and Geochemistry for Mine Closure – The Metsämonttu Zn-Cu-Pb-Au-Ag-Mine, Finland. – In: Wolkersdorfer, Ch., Sartz, L., Sillanpää, M. & Häkkinen, A. (eds): IMWA 2017 – Mine Water & Circular Economy I. – S. 132—139, 3 Abb., 1 Tab.; Lappeenranta (Lappeenranta University of Technology).
Wolkersdorfer, Ch. (2021): Reinigungsverfahren für Grubenwasser [Mine Water Treatment]. – 362 p., 114 Abb., 29 Tab.; Heidelberg (Springer), doi:10.1007/978-3-662-61721-2.
Wolkersdorfer, Ch. & Mugova, E. (2020): Temporäre Entwicklung der Dichteschichtung in einem gefluteten Bergwerksschacht eines Gold-Kleinbergbaus in Biberwier/Tirol [Temporary development of density layering in a flooded mine shaft of a small gold mine in Biberwier/Tyrol]. Paper presented at the Geoforum Umhausen, Umhausen. – S. 97—102, 3 Abb., 1 Tab.
Wolkersdorfer, Ch. & Mugova, E. (2021): Effects of Mining on Surface Water. – The Encyclopedia of Inland Waters, 2nd edn. – p., 6 Abb., 2 Tab.; Oxford (Elsevier), doi:10.1016/B978-0-12-819166-8.00036-0.
Wolkersdorfer, Ch., Mugova, E., Dagac, V. S., Charvetc, P. & Vitulec, J. R. S. (2021): Effects of Mining on Surface Water – Case Studies. – The Encyclopedia of Inland Waters, 2nd edn. – p., 6 Abb., 2 Tab.; Oxford (Elsevier), doi:10.1016/B978-0-12-819166-8.00085-2.
Wolkersdorfer, Ch., Nordstrom, D. K., Beckie, R., Cicerone, D. S., Elliot, T., Edraki, M., Valente, T. M., França, S. C. A., Kumar, P., Oyarzún Lucero, R. A. & Soler, A. I. G. (2020): Guidance for the Integrated Use of Hydrological, Geochemical, and Isotopic Tools in Mining Operations. – Mine Water Environ., 39(2):204—228, 7 Abb., 2 Tab., 5 Anl.; doi:10.1007/s10230-020-00666-x.
Wolkersdorfer, Ch., Shongwe, L. & Schmidt, C. (2016): Can natural Stratification prevent Pollution by Acid Mine Drainage? Paper presented at the IMWA 2016 – Mining Meets Water – Conflicts and Solutions, Leipzig/Germany. – S. 115—121; Freiberg (TU Bergakademie Freiberg).
Wolkersdorfer, Ch., Walter, S. & Mugova, E. (accepted): Perceptions on Mine Water and Mine Flooding – An Example from abandoned West German Hard Coal Mining Regions. – Resour. Policy, 13. Abb., 10 Tab., preprint: doi:10.2139/ssrn.4166727.
Yousefi, N., Rinder, T. & Hilberg, S. (submitted): The mine drainage from the spoil tip of a Bavarian pitch coal mine – a history of unmonitored natural attenuation. Grundwasser-Klima-Gesellschaft: Fachsektion Hydrogeologie e. V. in der DGGV e.V.