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Sensitivity of Predicted DNAPL Source Zone Longevity to Mass Transfer Correlation Modelq

机译:预测DNAPL源区寿命对大规模转移相关Q的敏感性

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Despite significant research into the topic for 20 years, the interrelationship of DNAPL source zones and downgradient aqueous-phase contaminant concentrations is poorly understood. A number of experimentally derived correlation models have been published to describe mass transfer from the non-aqueous to the dissolved phases. This study examines the sensitivity of DNAPL migration, dissolution and transport simulations in homogeneous and heterogeneous porous media to the choice of mass transfer expression using six published, experimentally derived correlation models. One-dimensional simulations illustrate the sensitivity of predicted effluent concentrations to the employed dissolution model. This sensitivity is observable in the magnitude of dissolved phase concentrations, the length of time during which contaminated groundwater effluxes through the column, and the pattern of dissolved phase concentrations observed over time. Two-dimensional simulations of a realistic DNAPL release into a heterogeneous porous medium illustrate that the dissolution model employed significantly impacts predicted behaviour. Source zone life spans were observed to vary by greater than an order of magnitude, and maximum observed aqueous-phase concentrations were observed to vary from the solubility limit to less than one-third that value. This study suggests that attempting to infer DNAPL source configuration from downgradient concentrations or to predict site remediation times remains uncertain until such time as a comprehensive mass-transfer expression is derived and validated.
机译:尽管对20年来进行了重大研究,但DNAPL源区和下坡水相污染物浓度的相互关系很差。已经公布了许多实验衍生的相关模型以描述从非水至溶解阶段的质量转移。该研究检测DNAPL迁移,溶出和运输模拟在均匀和异质多孔介质中的敏感性,以使用六种公布的实验衍生的相关模型选择传质表达的选择。一维模拟说明了预测流出物浓度与所用溶出模型的敏感性。在溶解相浓度的幅度下可观察到这种敏感性,在通过柱污染地下水排出的时间长度,随时间观察到的溶解相浓度的图案。现实DNAPL释放到异质多孔介质中的二维模拟表明,溶出模型采用显着影响预测行为。源区寿命寿命被观察到变化大于幅度,并且观察到最大观察到的水相浓度,从溶解度限制到少于三分之一的价值。该研究表明,试图从下坡浓度或预测地点修复时间来推断DNAPL源配置仍然不确定,直到衍生和验证综合传感表达的时间。

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