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Microorganisms of low-temperature heavy oil reservoirs (Russia) and their possible application for enhanced oil recovery

机译:低温重油储层(俄罗斯)的微生物及其施加增强的采油

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Physicochemical and microbiological characteristics of formation waters low-temperature heavy oil reservoirs (Russia) were investigated. The Chernoozerskoe, Yuzhno-Suncheleevskoe, and Severo-Bogemskoe oilfields, which were exploited without water-flooding, were shown to harbor scant microbial communities, while microbial numbers in the water-flooded strata of the Vostochno-Anzirskoe and Cheremukhovskoe oilfields was as high as 10(6) cells/mL. The rates of sulfate reduction and methanogenesis were low, not exceeding 1982 ng S2-/(L day) and 9045 nL DDe(4)/(L day), respectively, in the samples from water-flooded strata. High-throughput sequencing of microbial 16S rRNA gene fragments in the community of injection water revealed the sequences of the Proteobacteria (74.7%), including Betaproteobacteria (40.2%), Alphaproteobacteria (20.7%), Gammaproteobacteria (10.1%), Deltaproteobacteria (2.0%), and Epsilonproteobacteria (1.6%), as well as Firmicutes (7.9%), Bacteroidetes (4.1%), and Archaea (0.2%). DGGE analysis of microbial mcrA genes in the community of injection water revealed methanogens of the genera Methanothrix, Methanospirillum, Methanobacterium, Methanoregula, Methanosarcina, and Methanoculleus, as well as unidentified Thermoplasmata. Pure cultures of bacteria of the genera Rhodococcus, Pseudomonas, Gordonia, Cellulomonas, etc., capable of biosurfactant production when grown on heavy oil, were isolated. Enrichment cultures of fermentative bacteria producing significant amounts of volatile organic acids (acetic, propionic, and butyric) from sacchariferous substrates were obtained. These acids dissolve the carbonates of oil-bearing rock efficiently. Selection of the efficient microbial technology for enhanced recovery of heavy oil from terrigenous and carbonate strata requires model experiments with microbial isolates and the cores of oil-bearing rocks.
机译:研究了地层水的物理化学和微生物特性低温重油储存器(俄罗斯)。在没有水洪水的情况下被剥削的Chernoozerskoe,Yuzhno-Suncheleevskoe和Severo-Bogemskoe油田被剥夺,而伏斯太诺 - Anzirskoe和Cheremukhovskoe油田的水淹地层中的微生物数量高达10(6)个细胞/ mL。硫酸盐降低和甲烷发生的速率低,不超过1982ng S2 - /(L日)和9045n1d <倒置的感叹号> DE(4)/(L日)在水淹水层中的样品中。注射水群落中微生物16S的高通量测序显示出植物群(74.7%)的序列,包括贝卡曲霉(40.2%),αproteobacteria(20.7%),γ曲线杆菌(10.1%),deltaproteobacteria(2.0% )和εpropectophotia(1.6%),以及更加(7.9%),菌体(4.1%)和archaea(0.2%)。注射水域中微生物MCRA基因的DGGE分析显示了属甲蛋白,甲烷台值,甲基杆菌,甲蛋白,甲蛋白酶和甲蛋白的甲烷,以及未识别的热正丙烷。分离出在重油中生长的生物表面活性剂产生的纯细菌的纯文化,Pseudoconas,Pseudomonas,戈登菊母,嗜睡剂,能够产生生物活性剂产生。获得从糖类基材中产生大量挥发性有机酸(醋酸,丙酸和丁基)的发酵细菌的富集培养。这些酸有效地溶解含油岩石的碳酸盐。从植牛和碳酸盐层增强重油恢复的有效微生物技术的选择需要使用微生物分离株和含油岩石的核心模型实验。

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