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Hydrodynamic influence on reservoir sustainability in semi-arid climate: A physicochemical and environmental isotopic study

机译:半干旱气候中水动力对储层可持续性的影响:一项物理化学和环境同位素研究

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摘要

Water scarcity and increasing water demand require the development of water management plans such as establishing artificial lakes and dams. Plans to meet water needs are faced by uprising challenges to improve water quality and to ensure the sustainability of hydro-projects. Environmental isotopes coupled to water physicochemical characteristics were investigated over a biennial cycle to assess both geomorphological and environmental impacts on the water quality of a reservoir situated in an intensively used agricultural watershed under a Mediterranean semi-arid climate. The particularity of the semi-arid climate and the diverse topography generate a continental and orographic rain effect on the isotopic composition of precipitation and the water recharged sources. The studied reservoir responds quickly to land-use activities and climatic changes as reflected by temporal and spatial variations of water chemistry and isotopic composition. Increasing changes in precipitation rate and dry periods significantly modified the water isotopic composition in the reservoir. During the first year, hydrogen (8D) and oxygen (δ~(18)O) isotopes are depleted by 6 and 2%o between dry and wet season, respectively. While a shift of -2%o for δD and -1%o for δ~(18)O was detected during the second annual cycle. Environmental isotopic compositions demonstrate for the first time the occurrence of groundwater inflow to the central (Cz) and dam (Dz) zones of the Qaraaoun reservoir. The Cz and Dz can be considered as open water bodies subjected to dilution by groundwater inflow, which induces vertical mixing and reverse isotopic stratification of the water column. In the contrary, the river mouth zone acts as a closed system without groundwater intrusion, where heavy water accumulates and may act as a sink for contaminants during dry season. Groundwater influx acts as a dilution factor that renews the hypolimnion, and minimizes the perturbations induced by both internal biogeochemical reactions and external hydro- logical variations. Attention should be devoted to the hydrogeological location of planned reservoirs, which should take into account the vicinity of shallow water table to insure good water quality and water sustainability.
机译:缺水和不断增长的用水需求要求制定水管理计划,例如建立人工湖和水坝。满足水需求的计划面临着改善水质和确保水利项目可持续性的挑战。在每两年一次的循环中,研究了与水理化特性相关的环境同位素,以评估地貌和环境对位于地中海半干旱气候下密集使用的农业流域的水库水质的影响。半干旱气候的特殊性和多样的地形对降水和补给水的同位素组成产生了大陆性和地形性降雨效应。所研究的水库对土地利用活动和气候变化反应迅速,这反映在水化学和同位素组成的时空变化上。降水率和干旱期的增加变化显着地改变了储层中的水同位素组成。在第一年中,干季和湿季之间氢(8D)和氧(δ〜(18)O)同位素分别减少6%和2%o。在第二个年度周期中,δD的偏移为-2%o,δ〜(18)O的偏移为-1%o。环境同位素组成首次证明了地下水流向Qaraaoun水库的中央(Cz)和大坝(Dz)区。 Cz和Dz可以认为是经过地下水流入而受到稀释的开放水体,这会引起水柱的垂直混合和反向同位素分层。相反,河口区是一个封闭的系统,没有地下水的入侵,在这里,大量的水积聚,在干旱季节可能充当污染物汇。地下水涌入是稀释因子,可更新次水位,并使内部生物地球化学反应和外部水文变化引起的扰动最小化。应注意计划中的水库的水文地质位置,应考虑浅层地下水位附近,以确保良好的水质和水的可持续性。

著录项

  • 来源
    《Journal of Environmental Management》 |2017年第15期|571-581|共11页
  • 作者单位

    Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Faculty of Sciences, Lebanese University, P.O Box 5, Campus Rafic Hariri, Hadath-Beirut, Lebanon , Service de Biogeochimie et Modélisation du Système Terre - Océanographie Chimique et Géochimie des Eaux, Departement Ceosciences, Environnement et Société, Université Libre de Bruxelles, Campus de la Plaine - CP 208, Boulevard du Triomphe, B-1050, Brussels, Belgium , Earth and Life Institute - Environnemental Sciences, Universite catholique de Louvain, Croix du Sud 2, bte L7.05.10, 1348 B, Louvain-la-Neuve, Belgium;

    Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Faculty of Sciences, Lebanese University, P.O Box 5, Campus Rafic Hariri, Hadath-Beirut, Lebanon;

    Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Faculty of Sciences, Lebanese University, P.O Box 5, Campus Rafic Hariri, Hadath-Beirut, Lebanon;

    Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Faculty of Sciences, Lebanese University, P.O Box 5, Campus Rafic Hariri, Hadath-Beirut, Lebanon;

    Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Faculty of Sciences, Lebanese University, P.O Box 5, Campus Rafic Hariri, Hadath-Beirut, Lebanon;

    Service de Biogeochimie et Modélisation du Système Terre - Océanographie Chimique et Géochimie des Eaux, Departement Ceosciences, Environnement et Société, Université Libre de Bruxelles, Campus de la Plaine - CP 208, Boulevard du Triomphe, B-1050, Brussels, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Semi-arid; Reservoir; Groundwater; Environmental isotopes; Resource sustainability; Mediterranean basin;

    机译:半干旱水库;地下水;环境同位素;资源可持续性;地中海盆地;

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