首页> 外文期刊>Water resources research >Using Tidal Fluctuation-Induced Dynamics of Radium Isotopes (~(224)Ra, ~(223)Ra, and ~(228)Ra) to Trace the Hydrodynamics and Geochemical Reactions in a Coastal Groundwater Mixing Zone
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Using Tidal Fluctuation-Induced Dynamics of Radium Isotopes (~(224)Ra, ~(223)Ra, and ~(228)Ra) to Trace the Hydrodynamics and Geochemical Reactions in a Coastal Groundwater Mixing Zone

机译:利用潮汐涨落引起的放射性同位素(〜(224)Ra,〜(223)Ra和〜(228)Ra)追踪沿海地下水混合区的水动力和地球化学反应

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摘要

The reactive transport of radium isotopes (Ra-224, Ra-223, and Ra-228) in coastal groundwater mixing zones (CGMZs) is sensitive to shifts of redox conditions and geochemical reactions induced by tidal fluctuation. This study presents a spatial distribution and temporal variation of radium isotopes in the CGMZ for the first time. Results show that the activity of radium isotopes in the upper saline plume (USP) is comparatively low due to a short residence time and mixing loss induced by the infiltration of low radium seawater whereas the activity of radium isotopes in the salt wedge (SW) is comparatively high due to a long residence time in the aquifer. The spatial distribution of radium isotopes is determined by the partitioning of radium isotopes, groundwater residence time, and relative ingrowth rates of radium isotopes. In addition, the variation of radium isotopes in the USP lags slightly (similar to 0 h) whereas the fluctuation of radium isotopes in the SW lags significantly (similar to 12 h) behind sea level oscillation. Tidal fluctuation affects the partitioning of radium isotopes through controlling seawater infiltration and subsequently influences the dynamics of radium isotopes in the USP. Concurrently, seawater infiltration significantly affects geochemical processes such as the production of nutrients and total alkalinity. Therefore, radium dynamics in the USP have implications for these geochemical processes. The variation of radium isotopes in the USP also has potential implications for transformation of trace metals such as iron and manganese because of the close affinity of radium isotopes to manganese and iron oxides.
机译:镭同位素(Ra-224,Ra-223和Ra-228)在沿海地下水混合区(CGMZs)中的反应性运输对潮汐波动引起的氧化还原条件变化和地球化学反应敏感。这项研究首次提出了CGMZ中镭同位素的空间分布和时间变化。结果表明,由于滞留时间短和低镭海水渗透引起的混合损失,上层盐流(USP)中的镭同位素活性相对较低,而盐楔(SW)中的镭同位素活性为由于在含水层中的停留时间较长,因此相对较高。镭同位素的空间分布取决于镭同位素的分配,地下水的停留时间以及镭同位素的相对向内生长速率。此外,USP中的镭同位素变化略有滞后(近似于0 h),而西南部的镭同位素波动显着滞后(近似于12 h)。潮汐波动通过控制海水的渗透影响镭同位素的分配,进而影响USP中镭同位素的动力学。同时,海水的渗透显着影响地球化学过程,例如养分的产生和总碱度。因此,USP中的镭动力学对这些地球化学过程具有影响。 USP中镭同位素的变化也对痕量金属(例如铁和锰)的转化具有潜在的影响,因为镭同位素与锰和氧化铁的亲和力很强。

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  • 来源
    《Water resources research》 |2018年第4期|2909-2930|共22页
  • 作者单位

    Univ Hong Kong, Dept Earth Sci, Hong Kong, Hong Kong, Peoples R China;

    Univ Hong Kong, Dept Earth Sci, Hong Kong, Hong Kong, Peoples R China;

    Univ Hong Kong, Dept Earth Sci, Hong Kong, Hong Kong, Peoples R China;

    Univ Hong Kong, Dept Earth Sci, Hong Kong, Hong Kong, Peoples R China;

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