article · HydroResearch
The Iullemmeden basin groundwater resources were assessed in the Dosso Region for the groundwater management. This study applied multivariate statistical analyses and classical tools of hydrogeochemistry to identify the main factors impacting groundwater mineralization. The results indicate the occurrence of acidic to basic fresh groundwaters but with excessive mineralization in some places. Good to excellent drinking groundwaters are largely represented in the system. The categorization of groundwater patterns evolves from (i) mixed types namely Ca/Mg-HCO 3 , Ca/Mg-Cl, Na-Cl/SO 4 , Ca-Cl/SO 4 and Ca/Mg-Cl/SO 4 for the Ct 3 particularly; to (ii) chloride types such as Na Cl, Ca Cl and Mg Cl mostly for Ct 1 and Ct 2 ; and (iii) the bicarbonate types precisely Na-HCO 3 , Ca-HCO 3 , Mg-HCO 3 for Ch. The weathering of silicate minerals and dissolution of carbonate and salts are the major processes in the multilayer system. The increase of EC and salinity in Ct 2 could come from the relics of ancient seawater during the last regression. To a lesser extent, fertilizers from agriculture, and livestock farming also contribute to groundwater mineralization and nitrate contamination in the study area. The groundwater assessment of the Iullemmeden sedimentary basin in the Dosso Region revealed the main factors and processes characterizing each aquifer of this system, which can be helpful for better groundwater resource management. • Groundwater was assessed in the multilayer transboundary Iullemmeden basin. • Groundwater stratification is discussed based on physicochemical parameters. • Hydrochemical process exhibited changes in the multilayer aquifers. • Groundwater quality evolves under geogenic and anthropogenic factors. • Leakage processes occur in the multilayer system.
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DOI: 10.1016/j.hydres.2024.09.008
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