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Phenanthrene removal from the contaminated soil using the electrokinetic-Fenton method and persulfate as an oxidizing agent

机译:使用电动芬顿法从污染的土壤中除去菲丙烯,并用过硫酸盐作为氧化剂

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Remediation of soils contaminated with hydrocarbon materials is of particular importance due to their association with food chain. One of the remediation methods, which has been taken into account in recent years by researchers, is the electrokinetic technique. In this study, the electrokinetic method was used in combination with the Fenton technique to remove phenanthrene from clay soil. Oxidizing agent and catalyst used in the Fenton technique greatly influenced the efficiency of the remediation process. To investigate the effect of these two factors on the remediation process, it was made use of three different types of electrodes as catalyst, including graphite, iron, and copper, as well as hydrogen peroxide and sodium persulfate with different concentrations as oxidizing agent. During the 9 experiments designed, factors affecting removal efficiency, such as remediation time, electric current intensity, electroosmotic flow rate, and pH of the cathode and anode reservoirs were also investigated. Overall, the use of the electrokinetic-Fenton method with 15% hydrogen peroxide and copper electrode exhibited a 100% increase in the process efficiency over the same time period required to perform the conventional electrokinetic method and removed 93% of the soil phenanthrene, these findings indicated that combining the Fenton technique with the electrokinetic method enhanced the efficiency of this method in removing organic pollutants from the soil. Also, the use of sodium persulfate as an oxidizing agent in the electrokinetic method increased the removal efficiency by more than 95% over the half time period required to perform the conventional electrokinetic method. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于其与食物链的关联,污染的烃材料污染的土壤的整理特别重要。近年来,由研究人员近年来被考虑的修复方法之一是电动技术。在该研究中,电动方法与FENTON技术结合使用以从粘土土中除去菲苯苯。用于芬顿技术的氧化剂和催化剂极大地影响了修复过程的效率。为了研究这两个因素对修复过程的影响,它是用三种不同类型的电极作为催化剂,包括石墨,铁和铜,以及过氧化氢和具有不同浓度的过硫酸钠作为氧化剂。还研究了在9实验期间,还研究了影响去除效率的因素,例如修复时间,电流强度,电渗流速和阴极和阳极储存器的pH。总的来说,使用具有15%过氧化氢和铜电极的电动芬顿方法在执行常规电动方法所需的时间段内,在处理效率增加100%增加100%,并除去了这些发现的93%的土壤菲苯乙烯表明,将FENTON技术与电动方法相结合,提高了该方法从土壤中除去有机污染物的效率。此外,在电动性方法中使用过硫酸钠作为氧化剂在执行传统电动方法所需的半段时间内将去除效率提高超过95%。 (c)2020 elestvier有限公司保留所有权利。

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