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DEGRADATION OF BENZOAPYRENE(BAP) IN A CLAY SOIL BY ELECTRO- BIOREMEDIATION

机译:通过电生物化粘土土壤中苯并a芘(BAP)的降解

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摘要

Electro-bioremediation is an innovative technology for the cleanup of organic-contaminated soil. This study attempted to test the feasibility of electrokinetic process for the bioremediation of soil contaminated with benzo[a]pyrene (Bap) as a model polycyclic aromatic hydrocarbon (PAH) at laboratory scale. The electric field caused great change in soil pH and moisture content near the anode; while using electrode polarity reversal, pH and moisture content could be finely controlled. Over 40% of the initial 50 mg/kg Bap in clay soil could be removed under electric field with electrode polarity reversal in 40 d, around 88% higher than that with bacteria treatment only. The electrokinetic stimulates the bacteria growth and accelerates the decontamination efficiency of Bap. Hence, the present study provides a promising electrokinetic technology for bioremediation of PAH contaminated soils.
机译:电生物化是一种用于清理有机污染土壤的创新技术。该研究试图测试在实验室规模的模型多环芳烃(PAH)中污染的土壤生物修复的电动过程的可行性。电场引起了阳极附近的土壤pH和水分含量的巨大变化;在使用电极极性反转的同时,可以精细地控制pH和水分含量。在粘土土壤中超过40%的初始50mg / kg Bap可以在40 d中的电极极性反转下除去粘土土壤中的初始50mg / kg壳体在电场下除去,仅比含有细菌的细菌治疗的88%。电动性刺激细菌生长并加速烤盘的去污效率。因此,本研究为PAH受污染的土壤生物修复提供了有希望的电动技术。

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