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首页> 外文期刊>Chemical engineering journal >Electrokinetic remediation of soil polluted with insoluble organics using biological permeable reactive barriers: Effect of periodic polarity reversal and voltage gradient
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Electrokinetic remediation of soil polluted with insoluble organics using biological permeable reactive barriers: Effect of periodic polarity reversal and voltage gradient

机译:使用生物渗透性反应性障碍物对不溶有机物污染的土壤进行电动修复:周期性极性反转和电压梯度的影响

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This study investigated the remediation of clay soil polluted with low-solubility organics (diesel hydrocarbons) using a combined electrochemical-biological technology. Electrokinetic soil flushing was used, coupled with a biological permeable reactive barrier, which was placed into soil away from electrodes to prevent the negative effects of the acidic and basic fronts on the viability of microorganisms. Three two-week long batch experiments were performed in a lab-scale installation specifically designed to evaluate the remediation of polluted soil. The primary variable under study was the electric field applied to the soil (0.5, 1.0 and 1.5 V cm(-1)), and the experimental procedure included daily polarity reversal of the electrodes and the addition of anionic surfactant in the electrode wells. The polarity reversal was observed to be a key strategy, which allowed adequate experimental conditions to be maintained in the soil (especially temperature and pH) for the success of the organic biodegradation process. The surfactant was evenly distributed across the soil, which helped the pollutant be transported. The biological activity was not limited to the barrier area but extended to the entire soil portion due to the microbial transport and growth far from the central barrier position. The voltage gradient did not have a strong influence on the measured experimental conditions (soil temperature, pH and moisture) but affected the electroosmotic flow. A higher diesel removal efficiency (36%) was observed when using the higher voltage gradient (1.5 V cm(-1)) after two weeks, which demonstrates a promising performance of the studied technology for a future real in-situ application. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究调查了结合使用电化学生物技术修复低溶解性有机物(柴油碳氢化合物)污染的粘土。使用电动土壤冲洗,结合生物可渗透的反应性屏障,将其置于远离电极的土壤中,以防止酸性和碱性前沿对微生物生存能力的负面影响。在专门设计用于评估污染土壤修复的实验室规模安装中进行了三个为期两周的批量实验。研究中的主要变量是施加到土壤上的电场(0.5、1.0和1.5 V cm(-1)),实验程序包括每天颠倒电极的极性以及在电极孔中添加阴离子表面活性剂。观察到极性反转是关键策略,该策略允许在土壤中保持适当的实验条件(尤其是温度和pH),以成功实现有机生物降解过程。表面活性剂均匀地分布在土壤中,这有助于污染物的运输。生物活性不限于屏障区域,而是由于微生物的运输和生长远离中央屏障位置而扩展到整个土壤部分。电压梯度对测得的实验条件(土壤温度,pH和湿度)影响不大,但会影响电渗流。两周后使用较高的电压梯度(1.5 V cm(-1))时,观察到较高的柴油去除效率(36%),这表明该技术在未来的实际应用中很有希望。 (C)2016 Elsevier B.V.保留所有权利。

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