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Improving the Sweeping Efficiency of Amendment by Using Polymer

机译:使用聚合物提高修正的综合效率

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Effective delivery of remedial amendment to the subsurface contamination zone is a challenge when the source zone is either in an aquifer or in a vadose zone. Polymer solutions are shear thinning fluids which can be used as delivery media to improve the distribution of remedial amendments injected into heterogeneous subsurface environments by increasing the viscosity and decreasing the velocity of the flooding solution. In this study, combinations of polymer (xanthan) and common remediation agent (potassium permanganate) were used for sweep efficiency-enhanced. This study utilized 2-D flow-tank experiments to examine the SE used by xanthan with KMnO4. Two different experimental models (Multi-layer and Surrounding models) were studied. They simulated the different flushing mode. The results showed that SE improved 13.5% and 21.3% for model 1 and model 2, respectively. Moreover, the lower concentration (500 mg/L) is the best choice in our experiment. Our work found that some advantages such as high viscosity retention, moderate remediation agent demand make xanthan/remediation agent become the most compatible for polymer-enhanced sweep efficiency. This will be used further experiments.
机译:有效地向地下污染区域提供补救修正案是源区在含水层或含量区的挑战。聚合物溶液是剪切稀释液,其可以用作递送介质,以通过增加粘度并降低洪水溶液的速度来改善注入异构地下环境中的补救修正的分布。在该研究中,使用聚合物(黄原烷)和常见修复剂(高锰酸钾)的组合来扫描效率增强。本研究利用了2-D流动罐的实验来检查黄原与KMNO4使用的SE。研究了两种不同的实验模型(多层和周围模型)。它们模拟了不同的冲洗模式。结果表明,SE分别提高了13.5%和21.3%,分别为21.3%。此外,较低浓度(500 mg / L)是我们实验中的最佳选择。我们的工作发现,一些优点如高粘度保留,中等修复剂需求使黄原/修复剂成为最兼容的聚合物增强扫描效率。这将是进一步的实验。

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