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A biosurfactant-producing and oil-degrading Bacillus subtilis strain enhances oil recovery under simulated reservoir conditions

机译:产生生物表面活性剂和降解油脂的枯草芽孢杆菌菌株可在模拟油藏条件下提高采收率

摘要

Microbial Enhanced Oil Recovery (MEOR) is potentially useful to increment oil recovery from reservoirs beyond primary and secondary recovery operations using microorganisms and their metabolites. In situ stimulation of microorganisms that produce biosurfactants and degrade heavy oil fractions reduces the capillary forces that retain the oil inside the reservoir and decreases oil viscosity, thus promoting its flow and increasing oil production. Bacillus subtilis #573, isolated from crude oil samples obtained from a Brazilian oil field with a moderate temperature (40ºC), was selected for further use in MEOR. This isolate can grow at temperatures up to 55ºC and salinities up to 100 g/l, and produces extracellular biosurfactants under both aerobic and anaerobic conditions in the presence of hydrocarbons. The biosurfactants produced reduced the surface tension to 30 mN/m, decrease the interfacial tension oil-water and exhibited a high emulsifying activity, as well as thermo- and salt-tolerance. The microbial isolate also showed the ability of degrading long-chain n-alkanes under aerobic and anaerobic conditions. Mobilization of heavy crude oil by this isolate was evaluated using sand-pack columns at 40ºC. Growing in situ B. subtilis #573 for 14 days allowed a 17% recovery of the entrapped crude oil. The recovered crude oil showed a decrease in the percentage of n-alkanes higher than C25 and its viscosity was reduced about 32%, which contributed to enhance its mobility. A core flooding equipment was used for a better simulation of the oil reservoir conditions (40ºC and 32.4 bars). Preliminary results showed an additional oil recovery of 4%. The results obtained demonstrated that the selected isolate can be useful to recover residual oil from mature reservoirs.
机译:微生物增强油采收率(MEOR)对于利用微生物及其代谢物进行初次和二次采收作业后,可增加从储层中采油的潜力。原位刺激产生生物表面活性剂并降解重油馏分的微生物会降低将油保留在储层内部并降低油粘度的毛细作用力,从而促进其流动并增加产油量。选择枯草芽孢杆菌(Bacillus subtilis)#573,从巴西油田中温(40ºC)的原油样品中分离出来,以进一步用于MEOR。这种分离物可以在高达55ºC的温度下生长,盐分高达100 g / l,并​​在有烃存在的有氧和厌氧条件下产生细胞外生物表面活性剂。产生的生物表面活性剂将表面张力降低至30 mN / m,降低了油水的界面张力,并显示出高乳化活性以及耐热和耐盐性。微生物分离物还显示出在需氧和厌氧条件下降解长链正构烷烃的能力。在40ºC下使用沙包柱评估了该分离物对重质原油的动员。将原位枯草芽孢杆菌(B.subtilis)#573种植14天可以使捕获的原油回收率达到17%。回收的原油显示出比C25高的正构烷烃百分比降低,其粘度降低了约32%,这有助于提高其流动性。使用岩心驱油设备可以更好地模拟油藏条件(40ºC和32.4 bar)。初步结果表明,额外的采油量为4%。获得的结果表明,所选择的分离物可用于从成熟油藏中回收残余油。

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