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Integrated In Situ Soil Remediation Technology: The Lasagna Process

机译:综合原位土壤修复技术:千层面工艺

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Contamination in low-permeability soils poses a significant technical challenge to in situ remediation efforts, primarily due to poor accessibility to the contaminants and difficulty in uniform delivery of treatment reagents. This paper discusses an integrated in situ remedial approach in which electrokinetics is coupled with sorption/degradation in treatment zones that are installed directly in the contaminated soils. Called Lasagna due to the layered appearance of electrodes and treatment zones, the technology could conceptually treat organic and inorganic contamination as well as mixed wastes. Laboratory results obtained with p-nitrophenol as a model organic contaminant in kaolinite support the feasibility of the approach. Key operating characteristics of the process are discussed.
机译:低渗透性土壤中的污染对原位修复工作提出了重大的技术挑战,这主要是由于污染物的可及性差以及难以均匀地输送处理试剂。本文讨论了一种综合的原位修复方法,其中电动学与直接安装在受污染土壤中的处理区中的吸附/降解相结合。由于电极和处理区域的分层外观而被称为千层面,该技术可以从概念上处理有机和无机污染物以及混合废物。用对硝基苯酚作为高岭石中的典型有机污染物获得的实验室结果支持了该方法的可行性。讨论了该过程的关键操作特征。

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