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The characterization of oil-degrading microorganisms from lubricating oil contaminated (scale) soil

机译:润滑油污染(结垢)土壤中降解油脂的微生物的表征

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Aims: To isolate and characterize oil-degrading microorganisms from contaminated (scale) soil. Methods and Results: Oil-degrading microorganisms were isolated from enrichment cultures of scale soil. Each isolate was identified using 16S rDNA gene and oil degradability was determined on both unused and used lubricating oil. The weight of the extracted remaining oil revealed that most isolates degraded unused lubricating oil more than used lubricating oil. Chemical composition of oil analysed by TLC-FID and GC-MS demonstrated that Nocardia simplex W9 degraded used oil the best, and resulted in a decrease in saturates, aromatics and resins to 52.46, 38.13 and 18.81%, respectively. Conclusions: Nocardia simplex W9 is the best degrader, among all the isolates, on both used and unused lubricating oil. Significance and Impact of the Study: The presence of Nocardia simplex W9 in scale soil enables iron to be recycled by biodegradation. [References: 15]
机译:目的:从受污染的(水垢)土壤中分离并表征降解石油的微生物。方法与结果:从规模土壤的富集培养中分离出可降解油脂的微生物。使用16S rDNA基因鉴定每种分离物,并测定未使用和使用过的润滑油的油降解性。提取的残留油的重量表明,大多数分离物比未使用的润滑油降解的程度更高。通过TLC-FID和GC-MS分析的油的化学组成表明,Nocardia simplex W9最好地降解了用过的油,并导致饱和油,芳烃和树脂的含量分别下降至52.46、38.13和18.81%。结论:在所有分离株中,无论使用还是未使用的润滑油,诺卡氏菌W9都是最好的降解剂。研究的意义和影响:污垢土壤中存在诺卡氏菌W9,可以通过生物降解回收铁。 [参考:15]

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