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首页> 外文期刊>Isotopes in environmental and health studies >Hydrogeochemical and isotope study of perched aquifers in the Cuvelai-Etosha Basin, Namibia
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Hydrogeochemical and isotope study of perched aquifers in the Cuvelai-Etosha Basin, Namibia

机译:纳米比亚Cuvelai-Etosha盆地栖息含水层的水文地球化学和同位素研究

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摘要

A hydrogeochemical and stable isotope study (H-2 and O-18) was carried out in the Cuvelai-Etosha Basin in order to characterize available groundwater and to identify possible recharge mechanisms for the perched aquifers. Data were collected during seven field campaigns between 2013 and 2015 from a total of 24 shallow and deep groundwater hand-dug wells. In the investigated groundwaters, hydrogencarbonate is the dominating anion in both well types, whereas cations vary between calcium and magnesium in deep wells, and sodium and potassium in shallow wells. Groundwater chemistry is controlled by dissolution of carbonate minerals, silicate weathering and ion exchange. Stable isotopic composition suggests that deep groundwater is recharged by high-intensity/large rainfall events, whereas the shallow wells can even be recharged by less-intense/small rainfall events. Water in deep wells reflect a mixture of water influenced by evaporation during or before infiltration and water that infiltrated through fast preferential pathways, whereas shallow wells are strongly influenced by evaporation. The findings of this research contribute to improve the understanding of hydrogeochemistry, recharge paths and temporal variations of perched aquifers.
机译:在Cuvelai-Etosha盆地进行了水文地球化学和稳定同位素研究(H-2和O-18),以表征可用地下水的特征并确定栖息含水层的补给机制。在2013年至2015年期间的7次野外运动期间,从总共24处浅层和深层地下水手工挖井中收集了数据。在研究的地下水中,碳酸氢盐是两种井类型中的主要阴离子,而深井中钙和镁之间的阳离子不同,而浅井中钠和钾之间的阳离子则不同。地下水化学是通过碳酸盐矿物的溶解,硅酸盐的风化和离子交换来控制的。稳定的同位素组成表明,高强度/大降雨事件可补给深层地下水,而强度较小/小降雨事件甚至可补给浅层井。深井中的水反映了在渗透过程中或渗透之前受蒸发影响的水与通过快速优先途径渗透的水的混合,而浅井则受到蒸发的强烈影响。这项研究的发现有助于增进对水文地球化学,补给路径和栖息含水层随时间变化的理解。

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