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Integral pumping test analyses of linearly sorbed groundwater contaminants using multiple wells: Inferring mass flows and natural attenuation rates

机译:使用多口井对线性吸附的地下水污染物进行整体泵送测试分析:推断质量流量和自然衰减率

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This paper addresses a field-scale application of the integral pumping test (IPT) method, which is a method for quantitative characterization of contaminant plumes (e.g., benzene, toluene, ethylbenzene, and xylenes (BTEX), chlorinated hydrocarbons, and polyaromatic hydrocarbons) in groundwater. We extend the associated analytical framework by formal consideration of linear, instantaneous sorption/retardation and provide novel nonrecursive analytical solutions for estimation of field-scale contaminant mass flows. We find that estimates of the average concentration obtained through IPTs are independent of the retardation factor under equilibrium conditions, although linear retardation due to sorption decreases the investigation volume in comparison with the nonretarded case. Furthermore, whereas previous studies were based on single-well analyses, we present in this paper developments relevant for multiple-well analyses by introducing a simple, analytical multiple-well framework for evaluation of IPTs considering overall water budgets. Although single-well analyses provide consistent results in isolation, their applicability on multiwell systems suffer from the fact that the theory does not include mass balance considerations for the gallery of wells that constitutes a control plane. Through application of the developed multiple-well methods to measurement data from the field we show that the estimated total mass flows across well galleries can differ considerably from corresponding estimates using single-well methods, which to some extent, also influences natural attenuation (NA) rate estimates. We believe that the developments presented here can provide a useful basis for biogeochemical studies of field-scale NA processes, including assessments of changes in isotope ratios.
机译:本文介绍了整体泵送测试(IPT)方法在现场的应用,该方法用于定量表征污染物羽流(例如,苯,甲苯,乙苯和二甲苯(BTEX),氯代烃和聚芳烃)在地下水中。我们通过对线性,瞬时吸附/延迟的形式化考虑来扩展相关的分析框架,并为估算现场规模的污染物质量流量提供新颖的非递归分析解决方案。我们发现通过IPT获得的平均浓度的估计值与平衡条件下的延迟因子无关,尽管与非延迟情况相比,由于吸附引起的线性延迟降低了研究量。此外,尽管先前的研究是基于单井分析,但我们在本文中介绍了与多井分析有关的最新进展,方法是引入一个简单的,分析性的多井框架来评估IPT,同时考虑总体水预算。尽管单井分析可以单独提供一致的结果,但是它们在多井系统中的适用性受到以下事实的困扰:该理论不包括构成控制平面的井道的质量平衡考虑。通过将已开发的多井方法应用于现场测量数据,我们表明,通过井道的估计总质量流量可能与使用单井方法的相应估计值相差很大,这在一定程度上也会影响自然衰减(NA)费率估算。我们认为,这里提出的进展可以为田间规模化NA过程的生物地球化学研究提供有用的基础,包括评估同位素比率的变化。

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