Die folgenden Projekte werden - unterstützt durch die Plattform - von interdisziplinären Forschungsteams bearbeitet und/oder mit Praxispartnern (Umweltverwaltung, Versorger, Industriepartner) durchgeführt:
Modelling of pathogens in rivers:Model toolbox to predict the influence of blue-green infrastructure and passive river restoration on pathogen concentrations and source apportionment in urban rivers under extreme hydrological events (BW-Stiftung; C. Zarfl, J. Schaper, Stadt Tübingen, Stadtentwässerung Tübingen; 2023-2026).
Developing a Conceptual emission model of microplastic (MP) pollution from contrasting urban catchments (Alexander von Humboldt-Stiftung: Georg Forster Research Fellow: T. Nasrabadi, Universität Tehran, P. Grathwohl, 2023-2025).
Nitratreduzierende mikrobielle Gemeinschaften aus porösem Gestein und Klüften im verkarsteten/geklüfteten Grundwasserleiter des Einzugsgebiets der Bronnbachquelle: DFG; Universitäten Stuttgart und Tübingen, S. Kleindienst, S. Abramov, P. Grathwohl, A. Kappler; 2024-2026).
PFAWAS - Input, preconcentration and mobilization of per- and polyfluoroalkyl substances (PFAS) in urban water infrastructures (BW-Stiftung; Universität Tübingen, Stadt Tübingen - Fachabeilung Wasserwirtschaft und Grün, Ch. Zwiener, P. Keller et al., 2023-2026).
7dSHerbicide:7dSH as a natural herbicide and possible alternative to glyphosate - Development of a marketable product. K. Harter (ZMBP), H. Köhler (EvE), collaboration with HS Bielefeld; 2022-2024.
Untersuchung des aus Bahnanlagen abgeleiteten und technisch gefassten Niederschlagwassers: Bewertung der Versickerung ins Grundwasser oder der Einleitung ins Oberflächengewässer (2021-2025; B. Susset, M. Finkel, H. Rügner, P. Grathwohl, Deutsche Bahn AG).
Ökologische Entwicklung und Nachnutzung von (teil-) renaturierten Gipsstandorten im Gebiet Ammerbuch (M. Ebner, C. Leven, H. Rügner, R. Hahn; 2025-2027, Gips-Schüle Stiftung).
Mini-Graduiertenschule MUSTEIN: Modeling and Understanding SpatioTemporal Environmental INteractions (Machine Learning Innovation funds; M. Butz, N. Ludwig, T. Scholten, C. Zarfl, et al.; 2021-2025).
Adaption an den Klimawandel - Erhöhung von Wasserrückhaltevermögen, Bodenstabilität, und CO2 Sequestrierung in Waldböden durch Moose(BMBF, FNR Waldklimafonds; 2022-2025; Dr. S. Seitz et al. Universität Tübingen, Stadt Tübingen, ForstBW, Fa. Hummel Pflanzenbau, Stuttgart).
SIEHE AUCH: Erfolgreicher Antrag für ein Exzellenzcluster TERRA - Terrestrische Geo-Biosphären Wechselwirkungen in einer Welt im Wandel - Wechselwirkungen zwischen Stabilität und Diversität der Geo- und Biosphäre. Ziel ist zu verstehen, wie diese Wechselwirkungen in terrestrischen Systemen auf Umweltveränderungen reagieren und diese wiederum beeinflussen. Projektlaufzeit 2026 bis 2032.
ICAWaR - lmproving climate adaptation policies for water resilience and carbon reduction in Germany; Dr. Melanie Nagel, Prof. Kira Rehfeld, Universität Tübingen. Intramural Funding, 2024-2026. weitere info
Real-time estimation of bathing water quality and pollutant source apportionment in urban rivers (J. Schaper, C. Zarfl, Univ. Tübingen, WWTP Tübingen, WWTP Herrenberg, funded by BW Stiftung, 2023-2025).
Climate-adapted groundwater management through real-time planning tools and model-based future scenarios (BMBF-LURCH; Univ. Tübingen, Univ. Hohenheim, KUP Stuttgart, ASG, LTZ Augustenberg; O. Cirpka, T. Streck, M. Finkel et al.; 2023-2026). siehe webpage
SAGE Centre: Regional Centre for Sustainable Adaptation to Global Change in the Middle East (Univ. Tübingen, Prof. Katja Tielbörger; Prof. Thomas Potthast; DAAD; 2021-2025). siehe webpage
Creating Climate Change Collaboration (4C) Baden-Württemberg - California State University (CSU): Austauschprogramm für Forschende (2019-2025; gefördert durch das Land Baden-Württemberg und die CSU; J. Raman, N. Ebner & H. Rügner).
Bedeutende assoziierte und abgeschlossene Projekte (Auswahl)
Exposure and Effect Monitoring before and after the upgrade of the WWTP Tübingen with an ozonation stage (R. Triebskorn et al., RP Tübingen, Stadt Tübingen, Stadtentwässerung Tübingen; 2019-2023). more info
SFB 1253 CAMPOS – Catchments as Reactors: Metabolism of Pollutant on the Landscape Scale war ein mehrjähriges multidiszipliäres Forschungsprojekt der Tübinger Geo- und Umweltwissenschaften im Bereich "Schadstoffforschung" (Sprecher Prof. Peter Grathwohl, 2017-2021, DFG finanziert). siehe webpage
SPP 1803 Earthshape - Earth Surface Shaping by Biota war ein Schwerpunktprogramm mit 6 Jahren Laufzeit (Sprecher: Prof. Todd Ehlers, Tübingen; 2016-2022, DFG-finanziert. siehe gepris webpage
Umweltgerechte Gesteinsgewinnung in Wasserschutzgebieten (Partner: ISTE, ASG und LUBW; 2016-2018; Industrie-/Landes-finanziert; Prof. Olaf A. Cirpka)
Details zu den Vorhaben über: h.ruegner@uni-tuebingen.de
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