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电动力学与生物刺激联合修复石油和重金属共存污染土壤。

Remediation of soil co-contaminated with petroleum and heavy metals by the integration of electrokinetics and biostimulation.

机构信息

State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China.

出版信息

J Hazard Mater. 2013 Sep 15;260:399-408. doi: 10.1016/j.jhazmat.2013.05.003. Epub 2013 May 13.

DOI:10.1016/j.jhazmat.2013.05.003
PMID:23807474
Abstract

Successful remediation of soil co-contaminated with high levels of organics and heavy metals is a challenging task, because that metal pollutants in soil can partially or completely suppress normal heterotrophic microbial activity and thus hamper biodegradation of organics. In this study, the benefits of integrating electrokinetic (EK) remediation with biodegradation for decontaminating soil co-contaminated with crude oil and Pb were evaluated in laboratory-scale experiments lasting for 30 days. The treated soil contained 12,500 mg/kg of total petroleum hydrocarbons (TPH) and 450 mg/kg Pb. The amendments of EDTA and Tween 80, together with a regular refreshing of electrolyte showed the best performance to remediate this contaminated soil. An important function of EDTA-enhanced EK treatment was to eliminate heavy metal toxicity from the soil, thus activating microbial degradation of oil. Although Tween 80 reduced current, it could serve as a second substrate for enhancing microbial growth and biodegradation. It was found that oil biodegradation degree and microbial numbers increased toward the anode and cathode. Microbial metabolism was found to be beneficial to metal release from the soil matrix. Under the optimum conditions, the soil Pb and TPH removal percentages after 30 days of running reached 81.7% and 88.3%, respectively. After treatment, both the residual soil Pb and TPH concentrations met the requirement of the Chinese soil environmental quality standards.

摘要

成功修复高度受有机物和重金属污染的土壤是一项具有挑战性的任务,因为土壤中的金属污染物可以部分或完全抑制正常的异养微生物活性,从而阻碍有机物的生物降解。本研究在为期 30 天的实验室规模实验中,评估了将电动(EK)修复与生物降解相结合修复同时受到原油和 Pb 污染的土壤的益处。处理过的土壤中含有 12500mg/kg 的总石油烃(TPH)和 450mg/kg 的 Pb。EDTA 和吐温 80 的添加以及电解质的定期更新显示出对这种污染土壤进行修复的最佳性能。EDTA 增强 EK 处理的一个重要功能是消除土壤中的重金属毒性,从而激活油的微生物降解。虽然吐温 80 降低了电流,但它可以作为增强微生物生长和生物降解的第二基质。结果发现,油的生物降解程度和微生物数量朝着阳极和阴极增加。微生物代谢有利于金属从土壤基质中释放。在最佳条件下,运行 30 天后土壤中 Pb 和 TPH 的去除率分别达到 81.7%和 88.3%。处理后,土壤中残留的 Pb 和 TPH 浓度均符合中国土壤环境质量标准的要求。

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