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Bioremediation of a weathered and a recently oil-contaminated soils from Brazil: a comparison study

机译:来自巴西的风化土壤和最近被石油污染的土壤的生物修复:一项比较研究

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摘要

The facility with which hydrocarbons can be removed from soils varies inversely with aging of soil samples as a result of weathering. Weathering refers to the result of biological, chemical and physical processes that can affect the type of hydrocarbons that remain in a soil. These processes enhance the sorption of hydrophobic organic contaminants (HOCs) to the soil matrix; decreasing the rate and extent of biodegradation. Additionally, pollutant compounds in high concentrations can more easily affect the microbial population of a recently contaminated soil than in a weathered one, leading to inhibition of the biodegradation process. The present work aimed at comparing the biodegradation efficiencies obtained in a recently oil-contaminated soil (spiked one) from Brazil and an weathered one, contaminated for four years, after the application of bioaugmentation and biostimulation techniques. Both soils were contaminated with 5.4% of total petroleum hydrocarbons (TPHs) and the highest biodegradation efficiency (7.4%) was reached for the weathered contaminated soil. It could be concluded that the low biodegradation efficiencies reached for all conditions tested reflect the treatment difficulty of a weathered soil contaminated with a high crude oil concentration. Moreover, both soils (weathered and recently contaminated) submitted to bioaugmentation and biostimulation techniques presented biodegradation efficiencies approximately twice as higher as the ones without the aforementioned treatment (natural attenuation). (C) 2004 Elsevier Ltd. All rights reserved.
机译:由于风化的结果,土壤中碳氢化合物的去除设施与土壤样品的老化成反比。风化是指可能影响残留在土壤中的碳氢化合物类型的生物,化学和物理过程的结果。这些过程增强了疏水性有机污染物(HOC)对土壤基质的吸附。降低生物降解的速度和程度。另外,高浓度的污染物比风化的土壤更容易影响最近被污染的土壤的微生物种群,从而抑制了生物降解过程。目前的工作旨在比较在应用生物强化和生物刺激技术后,最近从巴西被石油污染的土壤(掺加一种土壤)和受风化的土壤(经四年污染)获得的生物降解效率。两种土壤均被5.4%的总石油烃(TPHs)污染,风化的污染土壤达到了最高的生物降解效率(7.4%)。可以得出结论,在所有测试条件下都达到了较低的生物降解效率,这反映了被高原油浓度污染的风化土壤的处理难度。此外,经受生物强化和生物刺激技术的两种土壤(风化和最近被污染)的生物降解效率均约为未经上述处理(自然衰减)的生物降解效率的两倍。 (C)2004 Elsevier Ltd.保留所有权利。

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