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Groundwater evolution of the Continental Intercalaire aquifer of Southern Tunisia and a part of Southern Algeria: use of geochemical and isotopic indicators

机译:突尼斯南部和阿尔及利亚南部部分地区的大陆夹层含水层的地下水演化:地球化学和同位素指标的使用

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摘要

The expansion of irrigated agriculture and the overexploitation of groundwater aquifers are leading to saltwater intrusion, severe deterioration of groundwater quality and soil subsidence at arid areas. The geochemical processes taking place along an 800 km flow line in the non-carbonate Continental Intercalaire aquifer (CI) in North Africa are described using chemical (major and trace element) and isotopic indicators. The aquifer is hydraulically continuous from the Atlas Mountains in Algeria to the Chotts of Tunisia and the geochemical evidence corroborates this. The CI aquifer of North Africa is one of the largest confined aquifers in the world. The aquifer is hydraulically continuous from the Atlas Mountains in Algeria (recharge area) to the Chotts of Tunisia (discharge area) and the geochemical evidence corroborates this. The isotopic study (Delta~(18)O, Delta~2H) permits classifying groundwater into three groups. The first group is characterized by low ~3H concentrations, low ~(14)C activities and depleted stable isotope contents. It corresponds to an old end-member in relation with palaeoclimatic recharge which occurred during the Late Pleistocene and the Early Holocene humid periods. The second group is distinguished by high to moderate ~3H concentrations, high ~(14)C activities and enriched heavy isotope signatures. It corresponds to a modern end-member originating from a mixture of post-nuclear and present-day recharge in relation to return flow of irrigation. The third group is characterized by an average composition of stable and radiogenic isotope signatures. It provides evidence for the mixing between the upward moving palaeoclimatic end-member and the downward moving present-day end-member. Rainfall, originating from a mixture of Atlantic and Mediterranean air masses.
机译:灌溉农业的扩张和地下水含水层的过度开发导致干旱地区的海水入侵,地下水质量严重恶化和土壤沉降。使用化学(主要和痕量元素)和同位素指示剂描述了北非非碳酸盐大陆际跨界含水层(CI)中沿800 km流线发生的地球化学过程。从阿尔及利亚的阿特拉斯山脉到突尼斯的肖特斯,该含水层是水力连续的,而地球化学证据证实了这一点。北非的CI含水层是世界上最大的承压含水层之一。含水层从阿尔及利亚的阿特拉斯山脉(补给区)到突尼斯的肖特峰(补给区)是水力连续的,而地球化学证据证实了这一点。同位素研究(Delta〜(18)O,Delta〜2H)可以将地下水分为三类。第一组的特征是低〜3H浓度,低〜(14)C活性和贫化的稳定同位素含量。它对应于一个在更新世晚期和全新世早期湿润时期发生的与古气候补给有关的老终端成员。第二组的特征是高至中度〜3H浓度,高〜(14)C活性和丰富的重同位素特征。它对应于现代的最终成员,其起源是与灌溉回水有关的核后补给和当今补给的混合。第三类特征在于稳定和放射性同位素特征的平均组成。它为向上移动的古气候终端成员和向下移动的当今终端成员之间的混合提供了证据。降雨来自大西洋和地中海的混合空气。

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  • 来源
    《Desalination and water treatment》 |2014年第12期|1990-1996|共7页
  • 作者单位

    Water, Energy and Environmental Laboratory (L3E), National Engineers College of Sfax (Tunisia) (ENIS), Street of Soukra km 3.5, B.P.W: 3038 Sfax, Tunisia,Faculty of Sciences of Gabes, Department of Earth Sciences, City Campus Erriadh, Zirig, Gabes 6072, Tunisia;

    Water, Energy and Environmental Laboratory (L3E), National Engineers College of Sfax (Tunisia) (ENIS), Street of Soukra km 3.5, B.P.W: 3038 Sfax, Tunisia,Institute of Sciences and Technology of Water of Gabes, City Campus Erriadh, Zirig, Gabes 6072, Tunisia;

    Faculty of Technology Sciences of Setif (Algeria), Department of Earth Sciences, Setif, Algeria;

    Water, Energy and Environmental Laboratory (L3E), National Engineers College of Sfax (Tunisia) (ENIS), Street of Soukra km 3.5, B.P.W: 3038 Sfax, Tunisia;

    Water, Energy and Environmental Laboratory (L3E), National Engineers College of Sfax (Tunisia) (ENIS), Street of Soukra km 3.5, B.P.W: 3038 Sfax, Tunisia;

    Department of Earth Sciences, Institute of Applied Geosciences, Section Hydrogeology, Karlsruhe, Germany;

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

    Continental Intercalaire; Groundwater; Isotopic indicator; North Africa; Tunisia;

    机译:大陆式插卡;地下水;同位素指示剂;北非;突尼斯;

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