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Potential Application of Crude Oil Degrading Bacteria in Oil Spill and Waste Management

机译:漏油和废物管理中原油降解细菌的潜在应用

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Crude oil biodegradation by bacterial strains isolated from oil contaminated soil samples, Oman, were performed and its potential applications in crude oil waste management were analyzed. Accidental and occasional crude oil spills, treatment of produced water containing hydrocarbons and oil, and waste management are a major concern for petroleum industries. Various techniques such as, chemical, physical, biological and thermal treatments, are reported for treating spills and wastes on-site. We analyzed crude oil biodegradation by selected bacterial isolates from Oman, under reservoir conditions. Four potential bacterial isolates were selected, characterized by MALDI-Biotyper, and studied for crude oil biodegradation at 40 °C. The isolates were studied morphologically and by scanning electron microscope (SEM), and any changes in surface tension (biosurfactant production), during growth on crude oil as the only carbon source. Crude oil characteristics before and after biodegradation were analyzed by Gas chromatography-Mass specrtrometry (GC-MS). The bacterial strains were identified as Pseudomonas mendocina, Pseudomonas putida, and Brevibacillus agri. During the course of crude oil biodegradation, bacterial isolates showed growth, as analyzed by optical density measurement at 660 nm and cellular protein estimation; no changes were observed in surface tension values, and alteration in the cell morphology in presence of crude oil was observed. All four isolates showed oil clearing zones on agar plates coated with crude oil. Crude oil degradation was analyzed by GC-MS with respect to carbon numbers from C12 ?C30. P. mendocina II, P. putida and B. agri showed reduction in all the compounds, but P. mendocina I showed very little degradation of hydrocarbons. Maximum crude oil biodegradation (~50%) was observed by P. mendocina II. It can be concluded that the present findings indicate the application potential of these bacterial isolates in the crude oil biodegradation. This could be the ideal solution to treat the contaminated soil and water, which can also be applied for the bioremediation of oil spills and water bodies as a cost effective and environmental friendly approach.
机译:分析了从石油污染土壤样品中分离的细菌菌株的原油生物降解,并分析了原油废物管理中的潜在应用。意外且偶尔的原油泄漏,含有碳氢化合物和油的生产的水,以及废物管理是石油工业的主要关注点。据报道,各种技术,例如化学,物理,生物和热处理,用于在现场治疗溢出物和废物。在储层条件下,我们通过选定的细菌分离株分析了原油生物降解。选择四个潜在的细菌分离物,其特征在于Maldi-Biotyper,并在40℃下研究原油生物降解。分离株在于形态学地,通过扫描电子显微镜(SEM),以及表面张力(生物活性剂生产)的任何变化,原油作为唯一碳源的生长。通过气相色谱 - 质谱(GC-MS)分析生物降解前后的原油特性。细菌菌株被鉴定为假单胞菌,普维拉达岛,普维拉迪拉,Brevibacillus Agri。在原油生物降解过程中,细菌分离物显示出生长,如通过660nm和细胞蛋白质估计的光学密度测量分析;在表面张力值中没有观察到变化,观察到在原油存在下细胞形态的变化。所有四个分离物在涂有原油的琼脂平板上显示出油片清除区。通过GC-MS相对于来自C12 -C 30的碳数分析原油劣化。 P.Mendocina II,P. Putida和B. Agri显示所有化合物的减少,但P.Mendocina我表现出烃的劣化很小。 P.Mendocina II观察到最大原油生物降解(〜50%)。可以得出结论,本研究结果表明,这些细菌分离株在原油生物降解中的应用潜力。这可能是治疗受污染的土壤和水的理想解决方案,其也可以应用于石油泄漏和水体的生物修复,作为成本效益和环保的方法。

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