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An assessment of the effectiveness and impact of electrokinetic remediation for pyrene-contaminated soil 被引量:11

An assessment of the effectiveness and impact of electrokinetic remediation for pyrene-contaminated soil
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摘要 The effectiveness of electrokinetic remediation for pyrene-contaminated soil was investigated by an anode-cathode separated system using a salt bridge. The applied constant voltage was 24 V and the electrode gap was 24 cm. Two types of soil (sandy soil and loam soil) were selected because of their different conductive capabilities. The initial concentrations of pyrene in these soil samples were 261.3 mg/kg sandy soil and 259.8 mg/kg loam soil After treatment of the sandy soil and loam soil for seven days, 56.8% and 20.1% of the pyrene had been removed respectively. Under the same power supply voltage, the removal of the pollutant from the sandy soil was greater than that from the loam soil, due to the higher current and lower pH. Further analysis revealed that the effectiveness of electrokinetic remediation was affected by the energy expenditure, and was associated with changes in soil properties. The effectiveness of electrokinetic remediation for pyrene-contaminated soil was investigated by an anode-cathode separated system using a salt bridge. The applied constant voltage was 24 V and the electrode gap was 24 cm. Two types of soil (sandy soil and loam soil) were selected because of their different conductive capabilities. The initial concentrations of pyrene in these soil samples were 261.3 mg/kg sandy soil and 259.8 mg/kg loam soil After treatment of the sandy soil and loam soil for seven days, 56.8% and 20.1% of the pyrene had been removed respectively. Under the same power supply voltage, the removal of the pollutant from the sandy soil was greater than that from the loam soil, due to the higher current and lower pH. Further analysis revealed that the effectiveness of electrokinetic remediation was affected by the energy expenditure, and was associated with changes in soil properties.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第11期2290-2297,共8页 环境科学学报(英文版)
基金 supported by the Knowledge Innovation Project Key-Direction Project Sub-project of the Chinese Academy of Sciences (No. KZCX2-EW-407) the National Natural Science Foundation of China (Nos. 21047006, 21107119) the Key Project of Science and Technology of China (No. 2013ZX07202-007)
关键词 Electrokinetie remediation Anode-cathode separated system Electrochemical oxidation Soil Pyrene Electrokinetie remediation Anode-cathode separated system Electrochemical oxidation Soil Pyrene
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