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用于修复历史污染场地中烃类物质的电动芬顿技术。

Electrokinetic-Fenton technology for the remediation of hydrocarbons historically polluted sites.

作者信息

Sandu Ciprian, Popescu Marius, Rosales Emilio, Bocos Elvira, Pazos Marta, Lazar Gabriel, Sanromán M Angeles

机构信息

Department of Chemical Engineering, University of Vigo, Campus As Lagoas-Marcosende, 36310 Vigo, Spain; Faculty of Engineering, "Vasile Alecsandri" University of Bacau, Calea Marasesti 157, 600115 Bacau, Romania.

Department of Chemical Engineering, University of Vigo, Campus As Lagoas-Marcosende, 36310 Vigo, Spain.

出版信息

Chemosphere. 2016 Aug;156:347-356. doi: 10.1016/j.chemosphere.2016.04.133. Epub 2016 May 14.

Abstract

The feasibility of the electrokinetic-Fenton technology coupled with surfactants in the treatment of real historically hydrocarbons polluted soils has been studied. The characterisation of these soils from Spain and Romania was performed and identified as diesel and diesel-motor oil spillages, respectively. Moreover, the ageing of the spillages produced by the soil contamination was estimated showing the historical pollution of the sites (around 11 and 20 years for Romanian and Spanish soils, respectively). An ex-situ electrochemical treatment was performed to evaluate the adequacy of surfactants for the degradation of the hydrocarbons present in the soils. It was found an enhancement in the solubilisation and removal of TPHs with percentages increasing from 25.7 to 81.8% by the presence of Tween 80 for Spanish soil and from 15.1% to 71.6% for Triton X100 in Romanian soil. Therefore, the viability of coupling enhanced electrokinetic and Fenton remediation was evaluated through a simulated in-situ treatment at laboratory scale. The results demonstrated that the addition of the selected surfactants improved the solubilisation of the hydrocarbons and influenced the electroosmotic flow with a slight decrease. The efficiency of the treatment increased for both considered soil samples and a significant degradation level of the hydrocarbons compounds was observed. Buffering of pH coupled with the addition of a complexing agent showed to be important in the treatment process, facilitating the conditions for the degradation reactions that take place into the soil matrix. The results demonstrated the effectiveness of the selected techniques for remediation of the investigated soils.

摘要

研究了电动 - 芬顿技术与表面活性剂联用处理实际受历史烃类污染土壤的可行性。对来自西班牙和罗马尼亚的这些土壤进行了表征,分别确定为柴油和柴油 - 机油泄漏污染。此外,估算了土壤污染造成的泄漏老化情况,显示了这些场地的历史污染程度(罗马尼亚和西班牙土壤分别约为11年和20年)。进行了异位电化学处理,以评估表面活性剂对土壤中烃类降解的适用性。结果发现,对于西班牙土壤,吐温80的存在使总石油烃(TPHs)的增溶和去除得到增强,去除率从25.7%提高到81.8%;对于罗马尼亚土壤,曲拉通X100使TPHs去除率从15.1%提高到71.6%。因此,通过实验室规模的模拟原位处理评估了增强电动修复和芬顿修复联用的可行性。结果表明,添加所选表面活性剂提高了烃类的增溶效果,并对电渗流有轻微影响使其略有降低。对于两种土壤样品,处理效率均有所提高,且观察到烃类化合物有显著的降解水平。在处理过程中,pH缓冲与添加络合剂显示出很重要,为土壤基质中发生的降解反应创造了有利条件。结果证明了所选技术对所研究土壤修复的有效性。

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