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首页> 外文期刊>Journal of African Earth Sciences >Hydro-geochemical and isotopic composition of groundwater, with emphasis on sources of salinity, in the aquifer system in Northwestern Tunisia
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Hydro-geochemical and isotopic composition of groundwater, with emphasis on sources of salinity, in the aquifer system in Northwestern Tunisia

机译:突尼斯西北部含水层系统中地下水的水文地球化学和同位素组成,重点是盐分的来源

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摘要

The hydro-geochemical and isotopic data of groundwater of the aquifer of the El Kef area, North-Western Tunisia, were examined to determine the main factors controlling the groundwater chemistry and salinity as well as its hydro-geochemical evolution. This study area has a complex geological structure which is mainly controlled by halokinesis movements and inherited structures. Groundwater occurs in different water bearing formations belonging to Upper Cretaceous, Paleogene (Eocene) and Mio-Plio-Quaternary (MPQ). Different geochemical interpretation methods were used to identify the geochemical characteristics. Groundwater of the MPQ aquifer has the highest salinity values (0.3-7.0 g I~(-1)) in the study area due to the impact of agricultural activities. Piper diagram showed that Cl~- and SO_4~2, are the dominant anions, where as Na~+ is the most dominant cation, where it is sometimes replaced by Ca~(2+) and/or Mg~(2+) in the hydro-chemical facies of the groundwater. Dissolution of carbonate and sulfate minerals in the aquifer matrices and recharge areas as well as cation exchange are shown to modify the concentration of ions in groundwater. The groundwaters are depleted in ~2H and ~(18)O and displayed an isotopic signature close to that of meteoric water with d-excess values indicating present-day precipitation over the region and reflect the contribution of vapor masses from Mediterranean and Atlantic origins. The isotopic features suggest that most of the groundwater at the study area result from mixing between recent recharge and an older component recharged under climatic conditions cooler than at present.
机译:检查了突尼斯西北部El Kef地区含水层的地下水水文地球化学和同位素数据,以确定控制地下水化学和盐度及其水文地球化学演化的主要因素。该研究区具有复杂的地质结构,主要受晕动运动和继承结构的控制。地下水存在于上白垩统,古近纪(始新世)和Mio-Plio-第四纪(MPQ)的不同含水层中。不同的地球化学解释方法被用来识别地球化学特征。由于农业活动的影响,MPQ含水层中的地下水盐度值最高(0.3-7.0 g I〜(-1))。移液管图显示Cl〜-和SO_4〜2是主要的阴离子,其中Na〜+是最主要的阳离子,在某些情况下有时被Ca〜(2+)和/或Mg〜(2+)取代。地下水的水化学相。碳酸盐和硫酸盐矿物在含水层和补给区中的溶解以及阳离子交换显示出会改变地下水中离子的浓度。地下水在〜2H和〜(18)O中消耗ple尽,并表现出接近于大气水的同位素特征,d值超标,表明该地区目前有降水,并反映了来自地中海和大西洋起源的蒸气质量的贡献。同位素特征表明,研究区的大部分地下水是由于最近的补给与在比现在凉爽的气候条件下补给的较老的组分之间的混合所致。

著录项

  • 来源
    《Journal of African Earth Sciences》 |2013年第7期|10-24|共15页
  • 作者

    Younes Hamed; Ferid Dhahri;

  • 作者单位

    Faculty of Sciences of Gabes, Department of Earth Sciences, University Hatem Ben Taher, Campus Erriadh-Zirig 6072-Cabes, Tunisia,Water, Energy and Environmental Laboratory (L3E) - ENIS, Soukra Km 3.5, BP.W: 3038 Sfax, Tunisia;

    Faculty of Sciences of Gafsa, Department of Earth Sciences, City Sidi Ahmed Zaroug 2 2 00 Cafsa, Tunisia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Groundwater; Hydrogeochemistry; Isotopic data; Salinity; El Kef region; Tunisia;

    机译:地下水;水文地球化学;同位素数据;盐度;El Kef地区;突尼斯;

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