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Biodegradation and post-oxidation of fuel-weathered field soil

机译:燃料风化田间土壤生物降解及后氧化

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Owing to the less volatile and less biodegradable nature of weathered fuel-contaminated soil, it cannot be easily remediated using conventional bioremediation approaches. Therefore, this study was aimed to enhance the landfarming bioremediation process by introducing post-oxidation for the degradation of the residual total petroleum hydrocarbons (TPH) in fuel-contaminated field soil. A laboratory-scale landfarming bioaugmentation process was performed by using oil-degrading microbes, nutrients, and surfactants, followed by chemical oxidation as a post treatment. The results demonstrated that the addition of microbes and nutrients gradually decreased the TPH concentration of the soil (initial TPH = 5932 ± 267 mg/kg) with a removal efficiency of 70-72% (TPH > 800 mg/kg; Korean limit for non-residential sites). However, the use of post-oxidation treatments with 5% KMnO_4 decreased the TPH to approximately 401-453 mg/kg (TPH below 500 mg/kg; residential site limit) with an overall efficiency of 92-93% compared to the corresponding value of 13% for the control (water treatment). Performing landfarming through biodegradation followed by chemical oxidation as a post treatment could successfully remove the weathered TPH in soil below the regulatory limits. Furthermore, the post-oxidation treatment may oxidize the less biodegradable portions only after biodegradation, thereby minimizing the oxidant demand and enhancing the soil properties such as the pH, amount of natural substrates and microbial population.
机译:由于受风景燃料污染土壤的挥发性较少和较少的可生物降解性,因此可以使用常规生物修复方法容易地重新实施。因此,本研究旨在通过引入燃料污染的田间土壤中残留总石油烃(TPH)降解的后氧化后来增强地带化生物修复过程。通过使用油脂降解微生物,营养和表面活性剂进行实验室规模的土地化生物沉默过程,然后进行化学氧化作为后处理。结果表明,添加微生物和营养素的添加逐渐降低了土壤的TPH浓度(初始TPH = 5932±267mg / kg),除去效率为70-72%(TPH> 800mg / kg;韩国限制-Resiential网站)。然而,使用5%KMNO_4的后氧化处理将TPH降低至约401-453mg / kg(tph以下,低于500mg / kg;住宅位点限制),与相应的值相比,整体效率为92-93%对照(水处理)为13%。通过生物降解进行地妥种,随后化学氧化作为后处理可以成功地除去法规限制低于土壤中的风化TPH。此外,后氧化处理可以仅在生物降解之后氧化较低的可生物降解的部分,从而最小化氧化剂需求并增强土壤性质,例如pH,天然底物和微生物种群的量。

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