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Impacts of a large Sahelian city on groundwater hydrodynamics and quality: example of Niamey (Niger)
Authors:Aïssata B Hassane  Christian Leduc  Guillaume Favreau  Barbara A Bekins  Thomas Margueron
Institution:1.Département de Géologie,Université Abdou Moumouni,Niamey,Niger;2.IRD, UMR G-EAU,Montpellier,France;3.IRD, UMR Hydrosciences,Université de Montpellier,Montpellier,France;4.U. S. Geological Survey,Menlo Park,USA;5.Centre de Recherche Médicale et Sanitaire-CERMES,Niamey,Niger
Abstract:The management of groundwater resources is very important in the semiarid Sahel region, which is experiencing rapid urban development. Impacts of urbanization on groundwater resources were investigated in the unconfined aquifer of the Continental Terminal beneath the city of Niamey, Niger, using water level and chemical data. Hydrodynamic and chemical changes are best described by a combination of factors including the historical development of the city, current land use, water-table depth and topography. Seasonal groundwater recharge occurs with high spatial variability, as indicated by water-level monitoring in all wells, but there was no interannual trend over the 5-year study period. Groundwater salinity shows high spatial variability and a minor rising trend. The highest salinity is in the old city centre, with Na–NO3 dominant, and it increases seasonally with recharge. Salinity is much lower and more variable in the suburbs (Ca–HCO3, Ca–NO3, and Na–NO3 dominant). Nitrate is the main ionic contaminant and is seasonally or permanently above the international guidelines for drinking water quality in 36 % of sampled wells, with a peak value of 112 mg L?1 NO3–N (8 meq L?1). Comparison of urban and rural sites indicates a long-term increase in groundwater recharge and nitrate enrichment in the urban area with serious implications for groundwater management in the region.
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