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Modified Fenton oxidation of polycyclic aromatic hydrocarbon (PAH)-contaminated soils and the potential of bioremediation as post-treatment

机译:多环芳烃(PAH)污染土壤的改性Fenton氧化和后处理生物修复的潜力

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摘要

This work focuses on the remediation of polycyclic aromatic hydrocarbon (PAH)-contaminated soil using modified Fenton (MF) treatment coupled with a novel chelating agent (CA), a more effective technique among currently available technologies. The performance of MF treatment to promote PAH oxidation in artificially contaminated soil was investigated in a packed column with a hydrogen peroxide (H_2O_2) delivery system simulating in-situ soil flushing which is more representative of field conditions. The effectiveness of process parameters H_2O_2/soil, Fe~(3+)/soil, CA/soil weight ratios and reaction time were studied using a 24 three level factorial design experiments. An optimised operating condition of the MF treatment was observed at H_2O_2/soil 0.05, Fe3 +/soil 0.025, CA/soil 0.04 and 3 h reaction time with 79.42% and 68.08% PAH removals attainable for the upper and lower parts of the soil column respectively. The effects of natural attenuation and biostimulation process as post-treatment in the remediation of the PAH-contaminated soil were also studied. In all cases, 3-aromatic ring PAH (phenanthrene) was more readily degraded than 4-aromatic ring PAH (fluoranthene) regardless of the bioremediation approach. The results revealed that both natural attenuation and biostimulation could offer remarkable enhancement of up to 6.34% and 9.38% in PAH removals respectively after 8 weeks of incubation period. Overall, the results demonstrated that combined inorganic CA-enhanced MF treatment and bioremediation serves as a suitable strategy to enhance soil quality particularly to remediate soils heavily contaminated with mixtures of PAHs.
机译:这项工作的重点是使用改良的Fenton(MF)处理结合新型螯合剂(CA)修复多环芳烃(PAH)污染的土壤,这是当前可用技术中更有效的技术。在过氧化氢(H_2O_2)输送系统模拟现场土壤冲洗的填充柱中,研究了MF处理促进人工污染土壤中PAH氧化的性能,该方法更能代表田间条件。利用24个三级因子设计实验研究了工艺参数H_2O_2 /土壤,Fe〜(3 +)/土壤,CA /土壤重量比和反应时间的有效性。在H_2O_2 /土壤0.05,Fe3 + /土壤0.025,CA /土壤0.04和3 h反应时间下观察到了MF处理的最佳操作条件,土壤柱上部和下部的PAH去除率分别为79.42%和68.08%分别。还研究了自然衰减和生物刺激过程作为后处理对PAH污染土壤的修复作用。在所有情况下,无论采用何种生物修复方法,3-芳族环PAH(菲)都比4-芳族环PAH(荧蒽)更容易降解。结果表明,在潜伏期8周后,自然衰减和生物刺激均可分别显着提高PAH去除率,分别达到6.34%和9.38%。总体而言,结果表明,将无机CA增强的MF处理与生物修复相结合可作为提高土壤质量的合适策略,尤其是修复被PAHs混合物严重污染的土壤。

著录项

  • 来源
    《Science of the total environment》 |2012年第1期|p.240-249|共10页
  • 作者

    Venny; Suyin Gan; Hoon Kiat Ng;

  • 作者单位

    Department of Chemical and Environmental Engineering, The University of Nottingham Malaysia Campus, Jalan Broga, 43500 Semenyih, Selangor Dawl Ehsan, Malaysia;

    Department of Chemical and Environmental Engineering, The University of Nottingham Malaysia Campus, Jalan Broga, 43500 Semenyih, Selangor Dawl Ehsan, Malaysia;

    Department of Mechanical, Materials and Manufacturing Engineering, The University of Nottingham Malaysia Campus, jalan Broga. 43500 Semenyih, Selangor Darul Ehsan, Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioremediation; chelating agent; fenton; optimisation; PAH; response surface methodology;

    机译:生物修复;螯合剂芬顿优化;PAH;响应面法;

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