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Biodegradation of High Concentrations of Aliphatic Hydrocarbons in Soil from a Petroleum Refinery: Implications for Applicability of New Actinobacterial Strains

机译:石油炼油厂土壤中脂族脂肪烃的生物降解:新型肌动菌菌株适用性的影响

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摘要

At present, there is great demand for new resistant and metabolically active strains of biodegrading bacteria capable of degrading high concentrations of petroleum pollutants. In this study, we undertook a series of pot-based biodegradation experiments on soil from a petroleum refinery lagoon heavily polluted with aliphatic hydrocarbons (81.6 ± 2.5 g·kg−1 dry weight) and metals. Periodical bioaugmentation with either a mixture of isolated degraders identified as Bacillus sp. and Ochrobactrum sp. or biostimulation with nutrient medium, singly or in combination, did not produce any significant decrease in hydrocarbons, even after 455 days. Inoculation with Gordonia rubripertincta CWB2 and Rhodococcus erythropolis S43 in iron-limited media, however, resulted in a significant decrease in hydrocarbons 45 days after bioaugmentation. These actinobacterial strains, therefore, show significant potential for bioremediation of such highly polluted soils.
机译:目前,对能够降解高浓度的石油污染物的生物降解细菌的新抗性和代谢活性菌株具有很大的需求。在这项研究中,我们对来自脂族烃的石油炼油厂泻湖的土壤进行了一系列基于盆栽的生物降解实验(81.6±2.5g·kg -1干重)和金属。用鉴定为Bacillus sp的分离的降解剂的混合物的定期生物沉积。和ochrobactrum sp。或用营养培养基,单独或组合生物染色,即使在455天后也没有产生任何显着的烃。然而,在铁有限介质中接种戈登·鲁比特CWB2和rhodococcus rythopolis S43导致生物沉积后45天的碳氢化合物显着降低。因此,这些抗菌菌株表现出这种高度污染的土壤生物修复的显着潜力。

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