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首页> 外文期刊>Environmental Geology >Hydrogeologic and geochemical survey of aquifers based on chemical and isotopic characterisation of groundwater and rain waters: a case study in the Sisseb el Alem Basin (central-east Tunisia)
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Hydrogeologic and geochemical survey of aquifers based on chemical and isotopic characterisation of groundwater and rain waters: a case study in the Sisseb el Alem Basin (central-east Tunisia)

机译:基于地下水和雨水化学和同位素表征的水利地理和地球化学调查 - 以塞斯凯尔铝盆地(中东突尼斯)为例

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摘要

Chemical and isotopic composition of groundwaters and rain waters in the Sisseb el Alem basin (Tunisia) was monitored to obtain a hydrologic and geochemical characterization of the aquifers. The studied aquifers are the only water resource for domestic and irrigation use in the basin. Two aquifers have been identified by hydrogeologic data, one, shallower, flowing in Plio-Quaternary sediments, the other, deeper, in Miocenic-Oligocenic sediments. Although this area is intensively farmed with widespread fertiliser use and settlements are unsewered, groundwater in the area is relatively uncontaminated by land-use activities. The chemical and isotopic compositions of the sampled waters, which have a meteoric origin, are largely controlled by both the geological signatures of their drainage area and by evaporative processes and water-rock interaction (reverse cationic exchange) phenomena. Geochemical data suggest, on the basis of the Na/Cl, Cl/SO4 ratios and concentrations of Li, Sr, and Mn, that a hydraulic connection exists between two distinctive aquifers. One strongly influenced by Lake Saadine water characterised by Na/Cl1, high Cl/SO4 and Li, Sr, and Mn0.1meq/l, the other, deeper, characterised by Na/Cl1, low and near constant Cl/SO4 and Li, Sr, and Mn0.1meq/l. Despite relatively high salinity and SAR values, all sampled waters are suitable for irrigation in well-draining soils. The isotopic composition of the rain waters highlights the importance of evaporation in controlling the composition of the groundwater.
机译:监测Sisseb El Alem盆地(突尼斯)的地下水和雨水的化学和同位素组成,以获得含水层的水文和地球化学表征。学习的含水层是盆地中唯一的家庭和灌溉用水的水资源。两种含水层已经通过水文地质数据,一个,较浅,流动,流动的Plio - 季沉积物,另一个,更深,在Miocenic-oligenic沉积物中。虽然这一领域采用广泛的肥料使用融化,但沉淀不合适,该地区的地下水相对不受土地使用活动。具有常规原点的取样水的化学和同位素组合物主要由流动面积的地质签名和蒸发过程和水岩相互作用(反向阳离子交换)现象来控制。地球化学数据表明,基于Na / Cl,Cl / SO4比和Li,Sr和Mn的浓度,在两个独特的含水层之间存在液压连接。由Na / Cl> 1,高Cl / SO4和Li,Sr和Mn> 0.1Meq / L,其他,更深,以Na / Cl <1,低恒定的Cl / SO4和LI,SR和MN <0.1MEQ / L.尽管盐度和SAR值相对较高,但所有采样的水域都适用于排水良好的土壤中的灌溉。雨水的同位素组成突出了蒸发在控制地下水的组成方面的重要性。

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