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The transport behaviour of elemental mercury DNAPL in saturated porous media: Analysis of field observations and two-phase flow modelling

机译:元素汞DNAPL在饱和多孔介质中的传输行为:现场观测分析和两相流模拟

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摘要

Mercury is a contaminant of global concern. The use of elemental mercury in various (former) industrial processes, such as chlorine production at chlor-alkali plants, is known to have resulted in soil and groundwater contaminations worldwide. However, the subsurface transport behaviour of elemental mercury as an immiscible dense non-aqueous phase liquid (DNAPL) in porous media has received minimal attention to date. Even though, such insight would aid in the remediation effort of mercury contaminated sites. Therefore, in this study a detailed field characterization of elemental mercury DNAPL distribution with depth was performed together with two-phase flow modelling, using STOMP. This is to evaluate the dynamics of mercury DNAPL migration and the controls on its distribution in saturated porous media. Using a CPT-probe mounted with a digital camera, in-situ mercury DNAPL depth distribution was obtained at a former chlor-alkali-plant, down to 9 m below ground surface. Images revealing the presence of silvery mercury DNAPL droplets were used to quantify its distribution, characteristics and saturation, using an image analysis method. These field-observations with depth were compared with results from a one-dimensional two-phase flow model simulation for the same transect. Considering the limitations of this approach, simulations reasonably reflected the variability and range of the mercury DNAPL distribution. To further explore the impact of mercury's physical properties in comparison with more common DNAPLs, the migration of mercury and PCE DNAPL in several typical hydrological scenarios was simulated. Comparison of the simulations suggest that mercury's higher density is the overall controlling factor in controlling its penetration in saturated porous media, despite its higher resistance to flow due to its higher viscosity. Based on these results the hazard of spilled mercury DNAPL to cause deep contamination of groundwater systems seems larger than for any other DNAPL.
机译:汞是全球关注的污染物。众所周知,在各种(以前的)工业过程中使用元素汞,例如在氯碱工厂生产氯气,已导致全球土壤和地下水污染。但是,迄今为止,作为多孔介质中不混溶的稠密非水相液体(DNAPL)的元素汞在地下的迁移行为受到的关注很少。即使这样,这种见识也将有助于汞污染场所的补救工作。因此,在这项研究中,使用STOMP进行了详细的元素汞DNAPL深度分布场表征以及两相流模拟。这是为了评估汞DNAPL迁移的动力学及其对饱和多孔介质中汞分布的控制。使用安装有数码相机的CPT探针,可以在距地面以下9 m的原氯碱工厂获得原位汞DNAPL深度分布。使用图像分析方法,使用揭示银汞DNAPL液滴存在的图像来量化其分布,特征和饱和度。将这些具有深度的场观测结果与同一断面的一维两相流模型仿真结果进行了比较。考虑到这种方法的局限性,模拟合理地反映了汞DNAPL分布的可变性和范围。为了进一步探索汞与更常见的DNAPL相比的物理特性的影响,模拟了几种典型水文情景中汞和PCE DNAPL的迁移。模拟的比较表明,汞的较高密度是控制其在饱和多孔介质中渗透的总体控制因素,尽管由于其较高的粘度而具有较高的流动阻力。基于这些结果,汞DNAPL洒出对地下水系统造成深层污染的危害似乎比任何其他DNAPL更大。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第6期|24-34|共11页
  • 作者单位

    Deltares, Princetonlaan 6, 3584 CB Utrecht, The Netherlands ,Utrecht University, Department of Earth Sciences, Environmental Hydrogeology Group, Budapestlaan 4, 3584 CD Utrecht, The Netherlands;

    Utrecht University, Department of Earth Sciences, Environmental Hydrogeology Group, Budapestlaan 4, 3584 CD Utrecht, The Netherlands ,KWR Watercycle Research Institute, Nieuwegein, The Netherlands;

    Deltares, Princetonlaan 6, 3584 CB Utrecht, The Netherlands;

    Philips Innovation Services, Eindhoven, The Netherlands;

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

    Mercury; PCE; DNAPL; Multi-phase flow; Camera push-probe; STOMP;

    机译:汞;PCE;DNAPL;多相流;相机推杆;脚踩;

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