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The groundwater geochemistry of the Saloum delta aquifer: Importance of silicate weathering, recharge and mixing processes

机译:Saloum三角洲含水层的地下水地球化学:硅酸盐风化,补给和混合过程的重要性

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The physical-chemical and isotopic characteristics of the groundwater in the Saloum detrital aquifer system obtained from a network of 74 sampling points have indicated the likely geochemical reactions and defined the groundwater flow regime in the context of a semi-arid region. The main geochemical zones with distinct water types and isotopic contents displayed through this investigation are the results of ion exchange reactions, both congruent and incongruent reactions of carbonate, silicate minerals combined with effects of recharge/ discharge by evaporation and salinization processes in the vicinity of the estuary system. Use of minor and trace elements against the conservative ions of Cl and Br supports the highly weathering processes of the aquifer matrix which seem even to affect by incongruent reactions the oxide and hydroxide minerals under aerobic conditions. In this region, recharge is highly heterogeneous and recent recharged waters as well as preferential flow paths have been evidenced using stable isotopes of18O and2H together with radioactive 3H.
机译:从74个采样点网络获得的Saloum碎屑含水层系统中地下水的物理化学和同位素特征表明了可能的地球化学反应,并确定了半干旱地区的地下水流态。通过这项调查显示,具有不同水类型和同位素含量的主要地球化学区是离子交换反应的结果,该离子交换反应是碳酸盐,硅酸盐矿物的全同和非全同反应,以及在该地区附近通过蒸发和盐化过程的补给/排出作用。河口系统。对Cl和Br的保守离子使用微量和微量元素可支持含水层基质的高度风化过程,该过程似乎甚至在好氧条件下受到氧化物和氢氧化物矿物的不相容反应的影响。在该地区,补给非常不均匀,使用稳定的18O和2H同位素以及放射性3H可以证明最近补给的水以及优先的流动路径。

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