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Modelling of microbial enhanced oil recovery application using anaerobic gas-producing bacteria

机译:厌氧产气细菌对微生物强化采油应用的建模

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Microbial enhanced oil recovery (MEOR) methods apply injection of bacteria to depleted oil reservoirs to produce oil, which had remained unrecovered after the conventional methods of production. The ability of thermophilic anaerobic bacteria to produce gas as the main mechanism in potential MEOR in high salinities of 70–100 g/L was investigated in this study. Maximum gas production of up to 350 mL per 700 mL of salty solution was produced at a salinity of 90 g/L stably during 2–4 days of experiment. The experimental results were upscaled to the Snorre Oilfield, Norway, and simulated using ECLIPSE software for 27 months. The best scenarios showed that the increase in oil recovery on average was at 21% and 17.8% respectively. This study demonstrated that anaerobic bacteria used in biogas plants could be an attractive candidate for MEOR implementation due to their ability to withstand high temperature and salinity, and produce gas in large volumes.
机译:微生物强化采油(MEOR)方法将细菌注入枯竭的油层中以生产油,在常规生产方法之后,这些油仍未被回收。在这项研究中,研究了高温厌氧细菌在70-100 g / L高盐度下产生气体的能力,这是潜在MEOR的主要机理。在2-4天的实验中,稳定在90 g / L的盐度下,每700 mL盐溶液最多可产生350 mL气体。实验结果被放大到挪威的Snorre油田,并使用ECLIPSE软件进行了27个月的模拟。最好的情况表明,石油采收率的平均增长分别为21%和17.8%。这项研究表明,沼气厂中使用的厌氧细菌由于能够承受高温和盐分并产生大量气体而成为MEOR实施的有吸引力的候选者。

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