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Bioremediation of diesel-polluted soil using biostimulation as post-treatment after oxidation with Fenton-like reagents: Assays in a pilot plant

机译:在Fenton样试剂氧化后使用生物刺激作为后处理进行生物污染的柴油修复:试验工厂中的分析

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摘要

The present study focuses on the remediation of diesel-polluted soil using modified Fenton treatment coupled with inorganic NPK fertilizer ("Fenton + NPK"). Studies were carried out in a pilot plant containing 1 m~3 of sandy soil contaminated with 20,000 mg kg~(-1) of diesel, placed outdoors at a temperature ranging between 5 and 10 ℃. Results showed that NPK-fertilizer as post-treatment stimulated culturable degrading bacteria and enhanced dehydrogenase activity. Fenton + NPK treatment increased total petroleum hydrocarbon (TPH) removal efficacy. Natural attenuation removed 49% of TPH in the surface layer, 23% of TPH in the non-saturated layer and 4% of the TPH in the saturated layer, while the percentage removed of TPH after Fenton + NPK treatment was 58%, 57% and 32% respectively. The results from our study showed that, immediately after soil contamination, occurred a specialization and differentiation of the bacterial community, but after this initial modification, no significant changes of bacterial diversity was observed under natural attenuation conditions. In contrast, when the Fenton's reagent was applied a reduction of the bacterial biodiversity was observed. However, the post-biostimulation did enhance the degrading microbiota and stimulated their degrading biological activity. In conclusion, biostimulation, as a post-treatment step in chemical oxidation, is an effective solution to remediate hydrocarbon-polluted sites.
机译:本研究的重点是采用改良的Fenton处理结合无机NPK肥料(“ Fenton + NPK”)修复柴油污染的土壤。在中试植物中进行研究,该植物含有1 m〜3的被20,000 mg kg〜(-1)柴油污染的沙质土壤,并放置在5至10℃的室外温度下。结果表明,氮磷钾肥料作为后处理可刺激可培养的降解细菌并增强脱氢酶活性。 Fenton + NPK处理提高了总石油烃(TPH)去除效果。自然衰减去除了表面层中49%的TPH,不饱和层中23%的TPH和饱和层中4%的TPH,而Fenton + NPK处理后TPH的去除百分比分别为58%,57%和32%。我们的研究结果表明,土壤污染后,细菌群落立即发生了专业化和分化,但经过最初的修饰后,在自然衰减条件下未观察到细菌多样性的显着变化。相反,当使用芬顿试剂时,观察到细菌生物多样性的减少。然而,生物刺激后确实增强了降解菌群并刺激了其降解生物活性。总之,作为化学氧化的后处理步骤,生物刺激是修复烃污染位点的有效解决方案。

著录项

  • 来源
    《Science of the total environment》 |2013年第15期|347-355|共9页
  • 作者单位

    Department of Microbiology, Institute of Water Research, University of Granada, Spain, C/Ramon y Cajal no 4, 18071 Granada, Spain;

    Department of Microbiology, Institute of Water Research, University of Granada, Spain, C/Ramon y Cajal no 4, 18071 Granada, Spain;

    AG Ambiental, C/lsla del Hierro 7 1 Planta, San Sebastian de los Reyes, 28700 Madrid, Spain;

    AG Ambiental, C/lsla del Hierro 7 1 Planta, San Sebastian de los Reyes, 28700 Madrid, Spain;

    Department of Microbiology, Institute of Water Research, University of Granada, Spain, C/Ramon y Cajal no 4, 18071 Granada, Spain;

    Department of Microbiology, Institute of Water Research, University of Granada, Spain, C/Ramon y Cajal no 4, 18071 Granada, Spain;

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

    Bioremediation; Fenton-like; Contaminated soil; Hydrocarbon;

    机译:生物修复;类芬顿;受污染的土壤;烃;

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