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首页> 外文期刊>Journal of Contaminant Hydrology >A direct passive method for measuring water and contaminant fluxes in porous media
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A direct passive method for measuring water and contaminant fluxes in porous media

机译:一种直接被动方法,用于测量多孔介质中的水和污染物通量

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This paper introduces a new direct method for measuring water and contaminant fluxes in porous media. The method uses a passive flux meter (PFM), which is essentially a self-contained permeable unit properly sized to fit tightly in a screened well or boring. The meter is designed to accommodate a mixed medium of hydrophobic and/or hydrophilic permeable sorbents, which retain dissolved organic/inorganic contaminants present in the groundwater flowing passively through the meter. The contaminant mass intercepted and retained on the sorbent is used to quantify cumulative contaminant mass flux. The sorptive matrix is also impregnated with known amounts of one or more water soluble 'resident tracers'. These tracers are displaced from the sorbent at rates proportional to the groundwater flux; hence, in the current meter design, the resident tracers are used to quantify cumulative groundwater flux. Theory is presented and quantitative tools are developed to interpret the water flux from tracers possessing linear and nonlinear elution profiles. The same theory is extended to derive functional relationships useful for quantifying cumulative contaminant mass flux. To validate theory and demonstrate the passive flux meter, results of multiple box-aquifer experiments are presented and discussed. From these experiments, it is seen that accurate water flux measurements are obtained when the tracer used in calculations resides in the meter at levels representing 20 to 70 percent of the initial condition. 2,4-Dimethyl-3-pentanol (DMP) is used as a surrogate groundwater contaminant in the box aquifer experiments. Cumulative DMP fluxes are measured within 5% of known fluxes. The accuracy of these estimates generally increases with the total volume of water intercepted.
机译:本文介绍了一种测量多孔介质中水和污染物通量的直接方法。该方法使用无源通量计(PFM),其本质上是一个独立的可渗透单元,其大小合适以紧密配合在筛分井或钻孔中。该流量计的设计可容纳疏水性和/或亲水性可渗透吸附剂的混合介质,该吸附剂可保留被动地流过该流量计的地下水中存在的溶解的有机/无机污染物。截留并保留在吸附剂上的污染物质量用于量化累积污染物质量通量。吸附性基质也浸渍有已知量的一种或多种水溶性“驻留示踪剂”。这些示踪剂以与地下水通量成比例的速率从吸附剂中置换出来。因此,在当前的水表设计中,常驻示踪剂用于量化累积的地下水通量。提出了理论并开发了定量工具来解释具有线性和非线性洗脱曲线的示踪剂的水通量。扩展了相同的理论,以得出可用于量化累积污染物质量通量的函数关系。为了验证理论并证明无源通量计,提出并讨论了多个箱式含水层实验的结果。从这些实验中可以看出,当计算中使用的示踪剂以代表初始条件的20%到70%的水平放置在仪表中时,可以获得准确的水通量测量值。在箱式含水层实验中,将2,4-二甲基-3-戊醇(DMP)用作替代地下水的污染物。 DMP累积通量的测量范围为已知通量的5%。这些估计的准确性通常随截获的水总量而增加。

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