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首页> 外文期刊>Hydrogeology journal >Hydrochemical and isotopic behaviour of a Saharan phreatic aquifer suffering severe natural and anthropic constraints (case of Oued-Souf region, Algeria)
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Hydrochemical and isotopic behaviour of a Saharan phreatic aquifer suffering severe natural and anthropic constraints (case of Oued-Souf region, Algeria)

机译:遭受严重自然和人为限制的撒哈拉潜水含水层的水化学和同位素行为(阿尔及利亚Oued-Souf地区)

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摘要

An approach combining the use of water dissolved chemical species and isotopic fingerprints has been used to understand the behavior of a phreatic aquifer and to determine the origin of its different water components. This aquifer is located in the large sedimentary basin of the Great Oriental Erg (Algeria) and overlies two deeper aquifers: the Complexe Terminal (CT) and the Continental Intercalaire (CI). Besides the deterioration of its groundwater quality, its water table has risen during the last 20 years. A water budget surplus between 950 and 2500 l s(-1) was estimated. Down-gradient groundwater evolution (south-north) has shown that the mineralisation increases from 1.23 to 5.20 g l(-1) due to evaporite minerals dissolution. Chemical and isotopic data demonstrated that in addition to rainfall there is a contribution from the CT and CI aquifers. The latter are tritium-free and less mineralized than the phreatic aquifer. Their radiocarbon contents are very low (< 10 pmC, percent modern Carbon) (Pleistocene recharge) whereas quite the contrary is observed for the superficial aquifer which exhibits fairly high and variable C-14 activities (50-100 pmC), evidence of recent recharge. On the basis of tritium contents, two groundwater groups were identified for the phreatic aquifer.
机译:结合使用水溶性化学物质和同位素指纹的方法已被用于了解潜水含水层的行为并确定其不同水成分的来源。该含水层位于大东方Erg(阿尔及利亚)的大型沉积盆地中,并覆盖了两个较深的含水层:Complexe Terminal(CT)和Continental Intercalaire(CI)。除了地下水水质恶化外,过去20年中地下水位也有所上升。估计有950至2500 l s(-1)的水预算盈余。梯度下降的地下水演化(南北)表明,由于蒸发矿物质的溶解,矿化作用从1.23增加到5.20 g l(-1)。化学和同位素数据表明,除降雨外,CT和CI含水层也有贡献。后者不含tri,且比潜水含水层的矿化程度低。它们的放射性碳含量非常低(<10 pmC,现代碳百分比)(更新世补给),而表现出相当高且可变的C-14活性(50-100 pmC)的表层含水层却恰恰相反,这是最近补给的证据。根据of含量,确定了潜水蓄水层的两个地下水组。

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