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Effect of inorganic nutrients on bacterial community composition in oil-bearing sandstones from the subsurface strata of an onshore oil reservoir and its potential use in Microbial Enhanced Oil Recovery

机译:无机营养物对陆上油藏地下含油砂岩细菌群落组成的影响及其在微生物强化采油中的潜在应用

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摘要

Microbial Enhanced Oil Recovery (MEOR) is a promising strategy to improve recovery of residual oil in reservoirs, which can be performed by promoting specific indigenous microorganisms. In this study, we performed preliminary evaluation of the possibility of conducting MEOR at Mae Soon reservoir, an onshore reservoir in Northern Thailand. The reservoir’s physicochemical characteristics, including the characteristics of the wells, the oil-bearing sandstone cores, and the reservoir’s produced water, were determined. The microbiological characteristics of the oil wells in the reservoir were also investigated by submerging the reservoir’s sandstone core samples, obtained from 6 oil wells, in the reservoir’s produced water and in the produced water added with inorganic nutrients (KNO3 and NaH2PO4). The uncultured bacteria in both treatments were determined, using tagged 16S rRNA gene amplicon with Ion Torrent Sequencing Analysis. The effects of inorganic nutrients and the reservoir’s parameters on the bacterial communities were analysed. A total number of 16,828 OTUs were taxonomically classified into 89 classes and 584 genera. In the controls (sandstone cores submerged in the produced water), the dominant bacterial populations were related to Deinococcus-Thermus, and Betaproteobacteria; while in the nutrient treated samples, there was a marked increase in the relative abundance of Gammaproteobacteria in three samples. Thermus, Acinetobacter, and Pseudomonas were the most abundant genera, and these are potential microorganisms for MEOR. Analysis of correlations between physiochemical properties of the reservoir and bacterial genera, using spearman’s correlation analysis, suggested that some of the reservoir’s properties, especially of the well and the rock, could influence some bacterial genera. To our knowledge, this is the first demonstration of the effect of inorganic nutrients on alteration of bacterial communities attached to reservoir’s rock, and how the bacterial, physical, and chemical properties of a reservoir were co-analysed to serve as a basis for designing a MEOR process.
机译:微生物强化采油(MEOR)是一种有前途的策略,可以提高储层中残油的采收率,这可以通过促进特定的原生微生物来实现。在这项研究中,我们对泰国北部的陆上水库湄顺水库进行MEOR的可能性进行了初步评估。确定了油藏的理化特性,包括井的特性,含油砂岩岩心和油藏的采出水。还通过将储层的砂岩岩心样品(从6口油井中获得),储层的采出水和添加了无机营养素(KNO3和NaH2PO4)的采出水中淹没,来研究储层中油井的微生物学特征。使用带离子流测序分析的带标签的16S rRNA基因扩增子确定两种处理中未培养的细菌。分析了无机养分和储层参数对细菌群落的影响。在分类学上,共有16,828个OTU分为89类和584属。在对照中(淹没在采出水中的砂岩核),优势细菌种群与Deinococcus-Thermus和Betaproteobacteria有关。而在经过营养素处理的样品中,三个样品中丙酸杆菌的相对丰度明显增加。栖热菌,不动杆菌和假单胞菌是最丰富的属,它们是MEOR的潜在微生物。使用Spearman的相关分析分析储层与细菌属之间的理化性质之间的相关性,表明储层的某些性质,尤其是井和岩石的性质,可能会影响某些细菌属。据我们所知,这是无机养分对储层岩石附着细菌群落变化的影响的首次证明,以及如何共同分析储层的细菌,物理和化学特性以作为设计储层的基础。 MEOR过程。

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