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Author Priyanka*, B.N.; Mohan Kumar, M.S. doi  openurl
  Title Direct and inverse modeling of seawater intrusion: A Perspective Type Journal Article
  Year 2017 Publication J. Geol. Soc. India Abbreviated Journal  
  Volume 90 Issue Pages (down) 595-601  
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  Call Number CUT @ phaedon.kyriakidis @ Priyanka2017 Serial 152  
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Author Lucia, M.D.; Kempka, T.; Jatnieks, J.; Kuhn, M. doi  openurl
  Title Integrating surrogate models into subsurface simulation framework allows computation of complex reactive transport scenarios Type Journal Article
  Year 2017 Publication Energy Procedia Abbreviated Journal  
  Volume 125 Issue Pages (down) 580-587  
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  Call Number CUT @ phaedon.kyriakidis @ lucia2017 Serial 112  
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Author Li*, L.; Zhou, H.; Franssen, H.J.H.; Gómez-Hernández, J.J. doi  openurl
  Title Groundwater flow inverse modeling in non-MultiGaussian media: performance assessment of the normal-score Ensemble Kalman Filter Type Journal Article
  Year 2012 Publication Hydrol. Earth Syst. Sci. Abbreviated Journal  
  Volume 16 Issue 2 Pages (down) 573-590  
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  Publisher Copernicus GmbH Place of Publication Editor  
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  Call Number CUT @ phaedon.kyriakidis @ Li2012 Serial 154  
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Author Oehler, T.; Tamborski, J.; Rahman, S.; Moosdorf, N.; Ahrens, J.; Mori, C.; Neuholz, R.Ã.©; Schnetger, B.; Beck, M. url  doi
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  Title DSi as a Tracer for Submarine Groundwater Discharge Type Journal Article
  Year 2019 Publication Frontiers in Marine Science Abbreviated Journal  
  Volume 6 Issue Pages (down) 563  
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  Abstract Submarine groundwater discharge (SGD) is an important source of nutrients and metals to the coastal ocean, affects coastal ecosystems, and is gaining recognition as a relevant water resource. SGD is usually quantified using geochemical tracers such as radon or radium. However, a few studies have also used dissolved silicon (DSi) as a tracer for SGD, as DSi is usually enriched in groundwater when compared to surface waters. In this study, we discuss the potential of DSi as a tracer in SGD studies based on a literature review and two case studies from contrasting environments. In the first case study, DSi is used to calculate SGD fluxes in a tropical volcanic-carbonate karstic region (southern Java, Indonesia), where SGD is dominated by terrestrial groundwater discharge. The second case study discusses DSi as a tracer for marine SGD (i.e., recirculated seawater) in the tidal flat area of Spiekeroog (southern North Sea), where SGD is dominantly driven by tidal pumping through beach sands. Our results indicate that DSi is a useful tracer for SGD in various lithologies (e.g., karstic, volcanic, complex) to quantify terrestrial and marine SGD fluxes. DSi can also be used to trace groundwater transport processes in the sediment and the coastal aquifer. Care has to be taken that all sources and sinks of DSi are known and can be quantified or neglected. One major limitation is that DSi is used by siliceous phytoplankton and therefore limits its applicability to times of the year when primary production of siliceous phytoplankton is low. In general, DSi is a powerful tracer for SGD in many environments. We recommend that DSi should be used to complement other conventionally used tracers, such as radon or radium, to help account for their own shortcomings.  
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  Call Number THL @ christoph.kuells @ Oehler2019 Serial 192  
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Author Löhnert, E.P.; Sonntag, C. openurl 
  Title Grundwasserversalzungen im Raum Hamburg im Licht neuer Isotopendaten Type Journal Article
  Year 1981 Publication Zeitschrift der Deutschen Geologischen Gesellschaft Abbreviated Journal  
  Volume 132 Issue Pages (down) 559-574  
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  Publisher Schweizerbart Science Publishers Place of Publication Stuttgart, Germany Editor  
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  Call Number THL @ christoph.kuells @ Loehhnert1981 Serial 185  
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