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Bacteria in the injection water differently impacts the bacterial communities of production wells in high-temperature petroleum reservoirs

机译:注入水中的细菌对高温石油储层生产井中细菌群落的影响不同

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摘要

Water flooding is widely used for oil recovery. However, how the introduction of bacteria via water flooding affects the subsurface ecosystem remains unknown. In the present study, the distinct bacterial communities of an injection well and six adjacent production wells were revealed using denaturing gradient gel electrophoresis (DGGE) and pyrosequencing. All sequences of the variable region 3 of the 16S rRNA gene retrieved from pyrosequencing were divided into 543 operational taxonomic units (OTUs) based on 97% similarity. Approximately 13.5% of the total sequences could not be assigned to any recognized phylum. The Unifrac distance analysis showed significant differences in the bacterial community structures between the production well and injection water samples. However, highly similar bacterial structures were shown for samples obtained from the same oil-bearing strata. More than 69% of the OTUs detected in the injection water sample were absent or detected in low abundance in the production wells. However, the abundance of two OTUs reached as high as 17.5 and 26.9% in two samples of production water, although the OTUs greatly varied among all samples. Combined with the differentiated water flow rate measured through ion tracing, we speculated that the transportation of injected bacteria was impacted through the varied permeability from the injection well to each of the production wells. Whether the injected bacteria predominate the production well bacterial community might depend both on the permeability of the strata and the reservoir conditions.
机译:注水被广泛用于石油采收。然而,通过注水引入细菌如何影响地下生态系统仍然未知。在本研究中,使用变性梯度凝胶电泳(DGGE)和焦磷酸测序揭示了注入井和六个相邻生产井的独特细菌群落。从焦磷酸测序中检索到的16S rRNA基因的可变区3的所有序列均基于97%的相似性分为543个操作生物分类单位(OTU)。总序列的大约13.5%不能分配给任何公认的门。 Unifrac距离分析显示生产井和注入水样品之间细菌群落结构的显着差异。但是,从相同的含油地层获得的样品显示出高度相似的细菌结构。在注入水样品中检测到的OTU中,超过69%的OTU在生产井中不存在或检测度很低。但是,尽管所有样品中的OTU差异很大,但是两个OTU样品中两个OTU的丰度分别高达17.5%和26.9%。结合通过离子示踪法测得的微分水流速率,我们推测注入细菌的运输受到注入井至每个生产井渗透率变化的影响。注入的细菌是否在生产井细菌群落中占主导地位,可能取决于地层的渗透性和储层条件。

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