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Fundamental Study of Pore Scale Mechanisms in Microbial Improved Oil Recovery Processes

机译:微生物改良采油过程中孔隙尺度机理的基础研究

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A fundamental study of microscopic mechanisms and pore-level phenomena in the Microbial Improved Oil Recovery method has been investigated. Understanding active mechanisms to increase oil recovery is the key to predict and plan MIOR projects successfully. This article presents the results of visualization experiments carried out in a transparent pore network model. In order to study the pore scale behavior of bacteria, dodecane and an alkane oxidizing bacterium, Rhodococcus sp. 094, suspended in brine, are examined for evaluating the performance of bacterial flooding in the glass micromodel. The observations show the effects of bacteria on remaining oil saturation, allowing us to get better insight on the mechanisms. Bacterial mass composed of bacteria and bioproducts growth in the fluid interfaces and pore walls have been recorded and are presented. No gas is observed throughout any of the experiments. The biomass blocks some pores and pore-throats, and thereby changing the flow pattern. As a consequent, the flow pattern change together with the previously proposed mechanisms, including the interfacial tension reduction and wettability changes are recognized as active mechanisms in the MIOR process.
机译:研究了微生物改进采油法中微观机理和孔隙水平现象的基础研究。了解提高石油采收率的积极机制是成功预测和计划MIOR项目的关键。本文介绍了在透明孔网络模型中进行可视化实验的结果。为了研究细菌,十二烷和烷烃氧化细菌Rhodococcus sp。的孔尺度行为。检查了悬浮在盐水中的094,以评估玻璃微模型中细菌泛滥的性能。观察结果表明细菌对剩余油饱和度的影响,使我们对机理有了更深入的了解。由细菌和生物产物在流体界面和孔壁中生长组成的细菌质量已被记录并提出。在所有实验中均未观察到气体。生物质堵塞了一些孔和喉咙,从而改变了流型。因此,在MIOR过程中,流动模式的变化与先前提出的机制(包括界面张力的降低和润湿性的改变)一起被认为是有效的机制。

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