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首页> 外文期刊>Chemical engineering journal >Remediation of soils polluted with 2,4-D by electrokinetic soil flushing with facing rows of electrodes: A case study in a pilot plant
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Remediation of soils polluted with 2,4-D by electrokinetic soil flushing with facing rows of electrodes: A case study in a pilot plant

机译:面对排电极的电动土壤冲洗修复2,4-D污染的土壤:中试工厂的案例研究

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This study focuses on evaluating the application of electrokinetic soil flushing (EKSF) technologies to remediate soil polluted with 2,4-dichlorophenoxyacetic acid (2,4-D). This compound was selected as an example of polar herbicides that may cause soil percolation and groundwater contamination due to its high water solubility, lifetime and mobility. To evaluate this technology, a 40-day test was conducted on a bench-scale set-up (175 dm(3) of capacity) that was fully automated and operating under potentiostatic mode (1 V cm(-1)). The electrical current, temperature, pH, humidity and pollutant concentration in the electrolyte wells were monitored daily, and at the end of the tests, a post-analysis characterization of the soil section was performed to obtain 3-D plots of the changes in each parameter. Simultaneously, a blank test was carried out (without applying an electric field) to determine spreading of the pollutant in the soil that did not experience an electric field. The results indicate that the 2,4-D is transported to the anode wells by electromigration (the primary species is an anion under the treatment pH) and the cathode wells by electroosmotic drag, even though a lower concentration is obtained because a large volume of water is mobilized. After 40 days of the EKSF treatment, 50% of the initial 2,4-D leaked into the soil was eliminated, 25% remained in the soil, and the remaining 25% was volatilized. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的重点是评估电动土壤冲洗(EKSF)技术在修复被2,4-二氯苯氧基乙酸(2,4-D)污染的土壤中的应用。选择该化合物作为极性除草剂的示例,这些极性除草剂因其高水溶性,使用寿命和流动性而可能导致土壤渗滤和地下水污染。为了评估这项技术,在一个台式规模的装置(容量为175 dm(3))上进行了40天的测试,该装置是完全自动化的并且在恒电位模式(1 V cm(-1))下运行。每天监测电解质井中的电流,温度,pH,湿度和污染物浓度,并在测试结束时对土壤剖面进行分析后表征,以获得每个变化的3-D图参数。同时,进行空白试验(不施加电场),以确定污染物在没有电场的土壤中的扩散。结果表明,尽管由于较低的浓度而获得了较低的浓度,但通过电迁移将2,4-D迁移至阳极(主要物质是在处理pH下的阴离子),而通过电渗阻力将其迁移至阴极。水被调动。经过EKSF处理40天后,消除了渗入土壤的50%初始2,4-D,残留在土壤中的25%,剩余的25%挥发了。 (C)2015 Elsevier B.V.保留所有权利。

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