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Assessment of flushing methods for the removal of heavy chlorinated compounds DNAPL in an alluvial aquifer

机译:评估冲积层中重氯化合物DNAPL的冲洗方法

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Immiscible mobilization and foam flushing were assessed as low surfactant consuming technologies, for the enhanced recovery of dense non-aqueous phase liquid (DNAPL) residual at a site contaminated by heavy chlorinated compounds. Preliminary experiments in well-controlled conditions demonstrated the phenomena involved in these remediation technologies and their limitations. Furthermore, we characterized the technologies according to by their surfactant consumption (per kg of DNAPL recovered) and the final DNAPL saturation reached. Surfactant foam flushing (SFF) produced lower DNAPL saturation than immiscible mobilization, thanks to its higher viscosity. However, its efficiency is strongly correlated to the pressure gradient (VP) used during injection, and that is limited by risks of soil fracturing. The two technologies were tested in field cells (lOmxlOmxlOm) delimited by cement/ bentonite walls anchored in the clayey substratum. The deepest soil layer was the most contaminated. It was composed of silt-sandy soil and had an average hydraulic conductivity of 10~(-4) m s~(-1). Field results show that we should now model flushing fluid propagation to design efficient set-ups for recovering the displaced DNAPL.
机译:不混溶的动员和泡沫冲洗被认为是低表面活性剂消耗技术,用于提高被重氯化合物污染的位点处的稠密非水相液体(DNAPL)残留物的回收率。在良好控制的条件下进行的初步实验证明了这些补救技术所涉及的现象及其局限性。此外,我们根据表面活性剂的消耗量(回收的每千克DNAPL)和达到的最终DNAPL饱和度对技术进行了表征。表面活性剂泡沫冲洗(SFF)的粘度较高,因此与不混溶的流动相比,DNAPL的饱和度较低。但是,其效率与注入过程中使用的压力梯度(VP)密切相关,并且受到土壤破裂风险的限制。两种技术都在现场单元(10mx10mx10m)中进行了测试,该单元由锚定在黏土基层中的水泥/膨润土墙界定。最深的土壤层污染最严重。它由淤泥质沙质土壤组成,平均水力传导率为10〜(-4)m s〜(-1)。现场结果表明,我们现在应该对冲洗液的传播进行建模,以设计有效的装置来回收被置换的DNAPL。

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