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Temperature-dependent dissolution of residual non-aqueous phase liquids: model development and verification

机译:残余非水相液体的温度依赖性溶解:模型开发和验证

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摘要

The use of heat storages in the subsurface, especially in urbanized areas, may conflict with existing subsurface contaminations of non-aqueous phase liquids (NAPL). In this work, available data and models regarding temperature influences on parameters for kinetic NAPL dissolution of trichloroethene (TCE) are summarized, discussed and implemented into a numerical simulator. As systematic data on temperature-dependent TCE solubility, diffusion coefficients and dissolution rates are sparse, a set of high-resolution quasi-2D laboratory NAPL dissolution experiments using TCE was conducted at 10, 20, 40 and 70 degrees C. Because the experimental data show incomplete dissolution of the residual TCE-NAPL, two different classes of TCE-NAPL blobs representing fast and slow dissolution kinetics were introduced in the model. A good agreement of model simulations and experimental measurements of TCE mass flow rates could thus be obtained for each temperature investigated. The numerical model thus can be applied to simulate kinetic dissolution of residual NAPL source zones in groundwater under variable temperature conditions.
机译:在地下,特别是在城市地区,使用储热器可能与现有的非水相液体(NAPL)地下污染相冲突。在这项工作中,有关温度对三氯乙烯(NAE)动力学NAPL溶解参数的影响的可用数据和模型被总结,讨论并实现为数值模拟器。由于有关温度依赖的TCE溶解度,扩散系数和溶解速率的系统数据稀疏,因此在10、20、40和70摄氏度下进行了一组使用TCE的高分辨率准2D实验室NAPL溶解实验。因为该实验数据由于显示残留TCE-NAPL的不完全溶解,在模型中引入了代表快速和慢速溶解动力学的两类不同的TCE-NAPL斑点。因此,对于所研究的每个温度,可以得到TCE质量流率的模型仿真和实验测量结果的良好一致性。因此,该数值模型可用于模拟可变温度条件下地下水中残留NAPL源区的动力学溶解。

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