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Constraining the temporal variations of Ra isotopes and Rn in the groundwater end-member: Implications for derived SGD estimates

机译:限制地下水末端成员中Ra同位素和Rn的时间变化:推导的SGD估算值的含义

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摘要

Submarine groundwater discharge (SGD) has been recognized as an important supplier of chemical compounds to the ocean that may influence coastal geochemical cycles. Radium isotopes (~(223)Ra, ~(224)Ra, ~(226)Ra,~(228)Ra) and radon (~(222)Rn) have been widely applied as tracers of SGD. Their application requires the appropriate characterization of both the concentrations of tracers in the discharging groundwater and their distribution in the coastal water column. This study evaluates the temporal evolution of Ra isotopes and ~(222)Rn concentrations in a dynamic subterranean estuary of a microtidal Mediterranean coastal aquifer that experiences large displacements of the fresh-saltwater interface as a necessary initial step in evaluating the influence of SGD in coastal waters. We show that changes in groundwater salinities due to the seaward displacement of the fresh-saltwater interface produced large variations in Ra activities in groundwater (by a factor of-19, -14, -6, and -11 for ~(223)Ra, ~(224)Ra, ~(225)Ra and ~(228)Ra, respectively), most importantly during rainfall events. In contrast, the ~(222)Rn activities in groundwater oscillated only by a factor of 3 during these rainy periods. The large temporal variability in Ra activities hampers the characterization of the SGD end-member when using Ra isotopes as tracers, and thus presents a challenge for obtaining accurate SGD estimates. This study emphasizes the need to understand the hydrodynamics of coastal aquifers to appropriately constrain the Ra isotopes and ~(222)Rn concentrations in groundwater and when applying both tracers in dynamic microtidal coastal systems.
机译:海底地下水排放(SGD)被公认为是可能影响沿海地球化学循环的重要化学物质供应商。镭同位素(〜(223)Ra,〜(224)Ra,〜(226)Ra,〜(228)Ra)和ra(〜(222)Rn)已广泛用作SGD的示踪剂。它们的应用要求对排放的地下水中示踪剂的浓度及其在沿海水域中的分布进行适当的表征。这项研究评估了一个小潮汐地中海沿岸含水层地下动态河口中Ra同位素和〜(222)Rn浓度的时间演变,该淡水沿淡水界面经历了大位移,这是评估SGD对沿岸地区影响的必要的初始步骤水域。我们发现,由于淡水界面向海移动导致地下水盐度变化,导致地下水中的Ra活性发生较大变化(〜(223)Ra的系数分别为-19,-14,-6和-11, 〜(224)Ra,〜(225)Ra和〜(228)Ra),最重要的是在降雨事件中。相反,在这些雨季,地下水中〜(222)Rn的活动仅振荡了3倍。当使用Ra同位素作为示踪剂时,Ra活度的较大时间变化会妨碍SGD末端成员的表征,因此对获得准确的SGD估算值提出了挑战。这项研究强调需要了解沿海含水层的水动力,以适当地限制地下水中的Ra同位素和〜(222)Rn浓度,以及在动态微潮沿海系统中应用这两种示踪剂时。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第1期|849-857|共9页
  • 作者单位

    GRC Geotiències Marines, Dep. de Dinàmica de la Terra i de I'Oceà, Universitat de Barcelona, 08028 Barcelona, Spain;

    Institut de Ciència i Tecnologia Ambientals (ICTA), Universitat Autdnoma de Barcelona, 08193 Bellaterra, Spain , Centre de Recherche et d'Enseignement de Géosciences de l'Environment (CEREGE), Aix-Marseille Université, 13545 Aix-en-Provence, France;

    Department of Civil and Environmental Engineering, Universitat Politècnica de Catalunya (UPC), 08034 Barcelona, Spain , Associated Unit: Hydrogeology (UPC-CSIC), Spain.;

    Institut de Ciència i Tecnologia Ambientals (ICTA), Universitat Autdnoma de Barcelona, 08193 Bellaterra, Spain , Departament de Flsica, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spam;

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

    Submarine groundwater discharge; Radium; Radon; Salinity interface; End-member;

    机译:海底地下水排放;镭;氡;盐度界面;最终成员;

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