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Infiltration and Distribution of Elemental Mercury DNAPL in Water-Saturated Porous Media: Experimental and Numerical Investigation

机译:元素汞DNAPL在水饱和多孔介质中的渗透和分布:实验和数值研究

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Liquid elemental mercury occurrence in the subsurface as dense non-aqueous phase liquid (DNAPL) is reported worldwide in proximity of several industrial facilities, such as chlor-alkali plants. Insight into Hg-0 DNAPL infiltration behavior is lacking and, to date, there are no experimental observations of its infiltration and distribution in water-saturated porous media, except for capillary pressure-saturation column experiments. To better understand the processes governing elemental mercury DNAPL flow behavior, a series of flow container experiments were performed using mercury DNAPL (in sands and glass beads) and tetrachloroethylene (PCE) (in sands). While liquid Hg-0 was not able to infiltrate in the sand-filled container due to an overall lower permeability of the sample and a defect of the setup, in the glass beads experiment mercury DNAPL infiltration occurred. Dual gamma ray measurements showed that, in glass beads, liquid Hg-0 preferentially migrated towards higher porosity zones. As for PCE, infiltration and distribution of Hg-0 DNAPL are strongly affected by the heterogeneities within the porous formation. However, compared to other DNAPLs, liquid Hg-0 shows a strong attenuation potential of gamma rays. Finally, numerical simulations of the glass beads experiment showed an overall good agreement with the experimental results, highlighting that, among the factors influencing the prediction of liquid Hg-0 migration in water-saturated porous media, the most critical are (i) the knowledge of the inflow rate, (ii) the reliable estimation of the porous formation permeability, and (iii) the accurate representation of the correlation between retention properties and intrinsic permeability.
机译:在世界范围内,据报道,在氯碱工厂等数个工业设施附近,地下元素汞以稠密非水相液体(DNAPL)的形式出现。缺乏对Hg-0 DNAPL渗透行为的深入了解,到目前为止,除毛细管压力饱和柱实验外,尚没有关于其在水饱和多孔介质中的渗透和分布的实验观察。为了更好地了解控制元素汞DNAPL流动行为的过程,使用汞DNAPL(在沙子和玻璃珠中)和四氯乙烯(PCE)(在沙子中)进行了一系列流量容器实验。尽管由于样品的总体渗透性较低和设置缺陷,液体Hg-0不能渗入充满沙子的容器中,但在玻璃珠实验中发生了汞DNAPL渗透。双重伽马射线测量表明,在玻璃珠中,液态Hg-0优先向较高孔隙率区域迁移。至于PCE,Hg-0 DNAPL的渗透和分布受到多孔地层内异质性的强烈影响。但是,与其他DNAPL相比,液态Hg-0表现出较强的伽马射线衰减潜能。最后,玻璃珠实验的数值模拟表明与实验结果总体上吻合良好,突显出,在影响水饱和多孔介质中液体Hg-0迁移的预测因素中,最关键的是(i)知识(ii)可靠估算多孔岩层渗透率,以及(iii)准确表示保留特性与固有渗透率之间的相关性。

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