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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Monitoring exogenous and indigenous bacteria by PCR-DGGE technology during the process of microbial enhanced oil recovery.
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Monitoring exogenous and indigenous bacteria by PCR-DGGE technology during the process of microbial enhanced oil recovery.

机译:在微生物提高采油率的过程中,通过PCR-DGGE技术监测外源和本地细菌。

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A field experiment was performed to monitor changes in exogenous bacteria and to investigate the diversity of indigenous bacteria during a field trial of microbial enhanced oil recovery (MEOR). Two wells (26-195 and 27-221) were injected with three exogenous strains and then closed to allow for microbial growth and metabolism. After a waiting period, the pumps were restarted and the samples were collected. The bacterial populations of these samples were analyzed by denaturing gradient gel electrophoresis (DGGE) with PCR-amplified 16S rRNA fragments. DGGE profiles indicated that the exogenous strains were retrieved in the production water samples and indigenous strains could also be detected. After the pumps were restarted, average oil yield increased to 1.58 and 4.52 tons per day in wells 26-195 and 27-221, respectively, compared with almost no oil output before the injection of exogenous bacteria. Exogenous bacteria and indigenous bacteria contributed together to the increased oil output. Sequence analysis of the DGGE bands revealed that Proteobacteria were a major component of the predominant bacteria in both wells. Changes in the bacteria population in the reservoirs during MEOR process were monitored by molecular analysis of the 16S rRNA gene sequence. DGGE analysis was a successful approach to investigate the changes in microorganisms used for enhancing oil recovery. The feasibility of MEOR technology in the petroleum industry was also demonstrated.
机译:在微生物增强油采收率(MEOR)的田间试验期间,进行了田间试验以监测外源细菌的变化并调查本地细菌的多样性。向两个孔(26-195和27-221)中注入三个外源菌株,然后关闭以允许微生物生长和代谢。等待一段时间后,重新启动泵并收集样品。通过使用PCR扩增的16S rRNA片段进行变性梯度凝胶电泳(DGGE),分析了这些样品的细菌种群。 DGGE图谱表明,在生产水样品中回收了外源菌株,还可以检测到本地菌株。泵重新启动后,在注入外源细菌之前几乎没有出油,而在26-195和27-221井中,平均石油产量分别提高到每天1.58吨和4.52吨。外来细菌和本地细菌共同促进了石油产量的增加。 DGGE条带的序列分析表明,变形杆菌是两个孔中主要细菌的主要成分。通过对16S rRNA基因序列进行分子分析,监测MEOR过程中水库中细菌种群的变化。 DGGE分析是研究用于提高采油量的微生物变化的成功方法。还证明了MEOR技术在石油工业中的可行性。

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