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Analysis of a gas-phase partitioning tracer test conducted in an unsaturated fractured-clay formation

机译:在不饱和裂隙粘土地层中进行的气相分配示踪剂试验分析

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The gas-phase partitioning tracer method was used to estimate non-aqueous phase liquid (NAPL), water, and air saturations in the vadose zone at a chlorinated-solvent contaminated field site in Tucson, AZ. The (racer test was conducted in a fractured-clay system that is the confining layer for the underlying regional aquifer. Three suites of three tracers were injected into wells located 14, 24, and 24 m from a single, central extraction well. The tracers comprised noble gases (traditionally thought to be nonsorbing), alkanes (primarily water partitioning), perfluorides (primarily NAPL partitioning), and halons (both NAPL and water partitioning). Observations of vacuum response were consistent with flow in a fractured system. The halon tracers exhibited the greatest amount of retardation, and helium and the perfluoride tracers the least. The alkane tracers were unexpectedly more retarded than the perfluoride tracers, indicating low NAPL saturations and high water saturations. An NAPL saturation of 0.01, water saturation of 0.215, and gas saturation of 0.775 was estimated based on analysis of the suite of tracers comprising helium, perfluoromethylcyclohexane and dibromodifluoromethane, which was considered to be the most robust set. The estimated saturations compare reasonably well to independently determined values.
机译:气相分配示踪法用于估算亚利桑那州图森市氯化溶剂污染的田间渗流区的非水相液体(NAPL),水和空气饱和度。 (种族测试是在裂缝性粘土系统中进行的,该系统是下层区域含水层的约束层。将三套示踪剂的三套注入到单个中央抽采井中位于14、24和24 m的井中。包括稀有气体(传统上被认为是非吸附性的),烷烃(主要是水的分配),全氟化物(主要是NAPL的分配)和哈龙(NAPL和水都被分配),观察到的真空响应与裂缝系统中的流动一致。示踪剂的阻滞量最大,氦和全氟化物的示踪剂最少,烷烃示踪剂的阻滞性比全氟化物的示踪剂出乎意料的高,表明低NAPL饱和度和高水饱和度; NAPL饱和度为0.01,水饱和度为0.215,以及根据对包括氦气,全氟甲基环己烷和二溴二氟甲烷的示踪剂组的分析,估计气体饱和度为0.775 ich被认为是最可靠的集合。估计的饱和度与独立确定的值比较合理。

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