首页> 外文期刊>Journal of Contaminant Hydrology >The use of mass depletion-mass flux reduction relationships during pumping to determine source zone mass of a reactive brominated-solvent DNAPL
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The use of mass depletion-mass flux reduction relationships during pumping to determine source zone mass of a reactive brominated-solvent DNAPL

机译:在泵送过程中使用质量消耗-质量通量减少关系来确定反应性溴化溶剂DNAPL的源区质量

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摘要

Mass depletion-mass flux relationships usually applied to a groundwater plume were established at field scale for groundwater pumped from within the source zone of a dense non-aqueous phase liquid (DNAPL). These were used as part of multiple lines of evidence in establishing the DNAPL source mass and architecture. Simplified source mass-dissolved concentration models including those described by exponential, power, and error functions as well as a rational mass equation based on the equilibrium stream tube approach were fitted to data from 285 days of source zone pumping (SZP) from a single well which removed 152 kg of dissolved organics from a multi-component, reactive brominared solvent DNAPL. The total molar concentration of the source compound, tetrabromoethane and its daughter products was used as a single measure of contaminant concentration to relate to source mass. A partitioning inter-well tracer test (PITT) conducted prior to the SZP provided estimates of groundwater travel times, enabling parameterisation of the models. After accounting for capture of the down-gradient dissolved plume, all models provided a good fit to the observed data. It was shown that differentiation between models would only emerge after appreciably more pumping from the source zone. The model fits were not particularly sensitive to the exponent parameters and variance of groundwater travel time. In addition, the multi-component nature of the DNAPL did not seem to affect the utility of the models for the period examined. Estimates of the DNAPL mass prior to the start of SZP from the models were greatest where the log of the variance of travel time was used explicitly in the source depletion models (mean 295 kg) compared to where the associated power exponent and variance was fitted freely (mean 258 kg). The estimates of source mass were close to that of 220 kg determined from the PITT. In addition to the PITT, multi-level groundwater sampling from within the source zone provided important supporting information for developing the conceptual model of the source zone. It is concluded that SZP may be an effective and relatively simple means for characterising DNAPL source zones.
机译:在田间规模上建立了从稠密非水相液体(DNAPL)的源区内泵送的地下水的质量消耗-质量通量关系。这些被用作建立DNAPL源质量和结构的多种证据的一部分。简化的源质量溶解浓度模型(包括用指数函数,幂函数和误差函数描述的模型以及基于平衡流管方法的合理质量方程)适用于单井285天源区抽水(SZP)的数据从多组分反应性溴化溶剂DNAPL中除去了152千克溶解的有机物。源化合物,四溴乙烷及其子产物的总摩尔浓度被用作与源质量相关的污染物浓度的单一度量。在SZP之前进行的分区井间示踪剂测试(PITT)提供了地下水传播时间的估算值,从而可以对模型进行参数化。在考虑了下降梯度溶解羽流的捕获之后,所有模型都很好地拟合了观测数据。结果表明,只有在从源区抽出明显更多的水之后,才会出现模型之间的差异。模型拟合对指数参数和地下水传播时间的变化并不特别敏感。此外,DNAPL的多组分性质似乎并未影响所研究期间模型的效用。在模型中,在SZP开始之前,DNAPL质量的估计值最大,而与之相关的幂指数和方差可自由拟合的情况相比,在源耗竭模型中明确使用了行进时间方差的对数(平均295 kg) (平均258公斤)。根据PITT确定的源质量估计值接近220千克。除了PITT,从源区内部进行多级地下水采样还为开发源区概念模型提供了重要的支持信息。结论是,SZP可能是表征DNAPL源区的有效且相对简单的方法。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2013年第1期|122-137|共16页
  • 作者单位

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia,School of Earth and Environment, University of Western Australia, Nedlands, Australia;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia,School of Earth and Environment, University of Western Australia, Nedlands, Australia;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia;

    Environmental Engineering Sciences, University of Florida, PO Box 116450, Gainesville, Florida, 32611-6450 ,USA;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia,School of Earth and Environment, University of Western Australia, Nedlands, Australia;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia;

    CSIRO Land and Water, Private Bag No. 5, Wembley, Western Australia, 6913, Australia;

    School of Civil Engineering, Purdue University, West Lafayette, Indiana, 47907-2051 ,USA;

    Rio Tinto, 120 Collins Street, Melbourne, Victoria, 3000, Australia;

  • 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

    brominatcd solvent; DNAPL; source zone; PITT; mass depletion; mass flux reduction; groundwater; contamination;

    机译:溴化溶剂;DNAPL;源区;PITT;大量消耗质量通量降低;地下水;污染;
  • 入库时间 2022-08-17 13:40:49

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