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Using biosurfactant producing bacteria isolated from an Iranian oil field for application in microbial enhanced oil recovery

机译:使用从伊朗油田分离出的产生生物表面活性剂的细菌用于微生物强化采油

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Microbial enhanced oil recovery (MEOR) is a useful technique to improve oil recovery from depleted oil reservoirs beyond primary and secondary recovery operations using bacteria and their metabolites. In the present study, the biosurfactant production potential of Bacillus licheniformis microorganisms that were isolated from oil samples of Zilaei reservoir in the southwest of Iran was explored under extreme conditions. Growth media with different temperatures of 40, 50, 60, and 70 degrees C; salinities of 1, 3, 5, and 7 wt%; and yeast extract concentrations of 0.5, 1, 1.5, and 2g/L were used to find the optimum growth conditions. The results demonstrated that bacteria grown in a mineral salt solution with temperature of 50 degrees C, salinity of 1 wt% and yeast extract concentration of 1g/L has the highest growth rate and therefore, these conditions are the optimum conditions for growing the introduced bacterium. This isolate was selected as the higher biosurfactant producer. The obtained biosurfactants by bacteria isolated in a medium with these conditions could reduce the interfacial tension of crude oil/water system from 36.8 to 0.93 mN/m and surface tension of water from 72 to 23.8 mN/m. The results of the core flooding tests showed that the tertiary oil recovery efficiency due to the injection of microorganisms was 13.7% of original oil in place and bacteria could reduce the oil viscosity by 41.242% at optimum conditions. Based on these results, the isolated microorganism is a promising candidate for the development of microbial oil recovery processes.
机译:微生物提高采油量(MEOR)是一种有用的技术,可以利用细菌及其代谢物,在一次和二次采收作业之后,从枯竭的油层中提高采收率。在本研究中,在极端条件下探索了从伊朗西南部Zilaei油藏的油样中分离出的地衣芽孢杆菌微生物的生物表面活性剂生产潜力。生长介质的温度分别为40、50、60和70摄氏度;盐度为1、3、5和7 wt%;酵母提取物的浓度分别为0.5、1、1.5和2g / L,以寻找最佳生长条件。结果表明,在温度为50℃,盐度为1 wt%,酵母提取物浓度为1g / L的矿物盐溶液中生长的细菌具有最高的生长速率,因此,这些条件是使所引入细菌生长的最佳条件。 。该分离物被选为高级生物表面活性剂生产商。通过在这些条件下的培养基中分离的细菌获得的生物表面活性剂可以将原油/水系统的界面张力从36.8降低到0.93 mN / m,水的表面张力从72降低到23.8 mN / m。岩心驱油试验的结果表明,注入微生物导致的三次采油效率为原位采油的13.7%,细菌在最佳条件下可使油的粘度降低41.242%。基于这些结果,分离出的微生物是开发微生物油回收方法的有前途的候选者。

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