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电动修复与化学氧化相结合用于处理杂酚油污染黏土

Integration of electrokinetics and chemical oxidation for the remediation of creosote-contaminated clay.

作者信息

Isosaari P, Piskonen R, Ojala P, Voipio S, Eilola K, Lehmus E, Itävaara M

机构信息

VTT Technical Research Centre of Finland, PO Box 1000, FI-02044 VTT, Finland.

出版信息

J Hazard Mater. 2007 Jun 1;144(1-2):538-48. doi: 10.1016/j.jhazmat.2006.10.068. Epub 2006 Oct 29.

Abstract

Remediation of clayey soils that are contaminated with polycyclic aromatic hydrocarbons (PAHs) is a challenging task that may require integration of several technologies. The benefits of integrating in situ electrokinetic remediation with chemical oxidation were evaluated in laboratory-scale experiments lasting for 8 weeks. A voltage gradient of 48 V/m of direct current and 4.7 V/m of alternating current and periodic additions of chemical oxidants were applied to creosote-contaminated soil. Electrokinetically enhanced oxidation with sodium persulphate resulted in better PAH removal (35%) than either electrokinetics (24%) or persulphate oxidation (12%) alone. However, the improvement was shown only within 1/3 (5 cm) of the soil compartment. Electrokinetics did not improve the performance of Fenton oxidation. Both chemical oxidants created more positive oxidation-reduction potential than electrokinetic treatment alone. On the other hand, persulphate treatment impaired the electroosmotic flow rate. Elemental analyses showed reduction in the natural Al and Ca concentrations, increase in Zn, Cu, P and S concentrations and transfer of several metal cations towards the cathode. In conclusion, the results encourage to further optimisation of an integrated remediation technology that combines the beneficial effects of electrokinetics, persulphate oxidation and Fenton oxidation.

摘要

修复被多环芳烃(PAHs)污染的黏性土壤是一项具有挑战性的任务,可能需要整合多种技术。在为期8周的实验室规模实验中,评估了将原位电动修复与化学氧化相结合的益处。对受杂酚油污染的土壤施加48 V/m的直流电压梯度、4.7 V/m的交流电压梯度以及定期添加化学氧化剂。用过硫酸钠进行电动强化氧化导致多环芳烃去除效果(35%)优于单独的电动修复(24%)或过硫酸盐氧化(12%)。然而,这种改善仅在土壤隔层的1/3(5厘米)范围内显现。电动修复并未提高芬顿氧化的性能。两种化学氧化剂都比单独的电动处理产生了更高的正氧化还原电位。另一方面,过硫酸盐处理损害了电渗流速。元素分析表明,天然铝和钙的浓度降低,锌、铜、磷和硫的浓度增加,并且几种金属阳离子向阴极迁移。总之,这些结果鼓励进一步优化一种综合修复技术,该技术结合了电动修复、过硫酸盐氧化和芬顿氧化的有益效果。

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