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Estimating the spatial distribution of artificial groundwater recharge using multiple tracers
Authors:Christian Moeck  Dirk Radny  Adrian Auckenthaler  Michael Berg  Juliane Hollender  Mario Schirmer
Affiliation:1. Eawag, Swiss Federal Institute of Aquatic Science and Technology, Dübendorf, Switzerland;2. Office of Environmental Protection and Energy, Canton Basel-Country, Switzerland;3. Institute of Biogeochemistry and Pollutant Dynamics, ETH Zürich, Zürich, Switzerland;4. Centre of Hydrogeology and Geothermics (CHYN), University of Neuchatel, Neuchatel, Switzerland
Abstract:Stable isotopes of water, organic micropollutants and hydrochemistry data are powerful tools for identifying different water types in areas where knowledge of the spatial distribution of different groundwater is critical for water resource management. An important question is how the assessments change if only one or a subset of these tracers is used. In this study, we estimate spatial artificial infiltration along an infiltration system with stage–discharge relationships and classify different water types based on the mentioned hydrochemistry data for a drinking water production area in Switzerland. Managed aquifer recharge via surface water that feeds into the aquifer creates a hydraulic barrier between contaminated groundwater and drinking water wells. We systematically compare the information from the aforementioned tracers and illustrate differences in distribution and mixing ratios. Despite uncertainties in the mixing ratios, we found that the overall spatial distribution of artificial infiltration is very similar for all the tracers. The highest infiltration occurred in the eastern part of the infiltration system, whereas infiltration in the western part was the lowest. More balanced infiltration within the infiltration system could cause the elevated groundwater mound to be distributed more evenly, preventing the natural inflow of contaminated groundwater.

Dedicated to Professor Peter Fritz on the occasion of his 80th birthday

Keywords:Groundwater mixing  hydrochemistry  hydrogen-2  isotope hydrology  managed aquifer recharge  organic micropollutants  oxygen-18  urban hydrogeology
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