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采油微生物在微驱过程中的生长、运移及分布规律 被引量:6

The growth, migration and distribution law of microbes during microbial displacement oil
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摘要 【目的】深入了解现场微生物驱油机理、效果评价标准及影响因素。【方法】结合现场微生物驱油过程产出液的跟踪监测及室内物模实验对微生物在地层中的生长繁殖、运移及分布规律进行研究。【结果】结果表明,通过从水井注入的外源微生物在油藏中能够有效生长繁殖,而且注入的营养液也能够激活内源微生物,但由于地层渗透率及营养液浓度的影响,产出液菌浓要比注入菌浓低1 2个数量级;葡萄糖的快速降解以及地层对微生物的过滤及吸附作用使大量的微生物停留在近井地带,仅有部分微生物能够从生产井采出,而且其运移速度要比营养液慢。【结论】地层渗透率和产出液中营养物浓度是影响微生物数量及分布的两个关键因素,现场微生物驱油产出液中的菌浓一般很难达到106个/mL以上,该研究结果对微生物驱油技术的发展和应用具有重要意义。 [Objective] To understand the field of microbial oil displacement mechanism, evaluation standards and its influence factors. [Methods] The growth, migration and distribution law of microbes during microbial displacement oil were studied based on site tracing monitoring during field microbial displacement oil and the physical model experiment in laboratory. [Results] The results show that the exogenous microbes injected from water injection well can grow and reproduce well in oil reservoir, and the injected nutrient solution is also capable of activating indigenous microbes, but the microbes concentration in produced fluid is lower 1?2 orders of magnitude than injected microbes concentration due to the formation permeability and nutrient concentration. Because of the rapid glucose degradation and the microbes filtration and adsorption by formation, the amount of microbes stay near the wellbore and only part of them can be produced from the corresponding oil well. Moreover, the migration rate of microbes is slower than nutrition. [Conclusion] The formation permeability and the nutrient concentration of output liquid are the two key factors on microbial quantity. The microbes concentration in produced fluid is difficult to exceed 106 cells/mL on site. The results of the study have a great significance for the development and application of microbial displacement oil technology.
出处 《微生物学通报》 CAS CSCD 北大核心 2013年第5期849-856,共8页 Microbiology China
基金 国家自然科学基金项目(No.51174092) 华北油田公司重大科技项目(No.2011-HB-Z230)
关键词 微生物驱油 现场应用 物模实验 微生物运移分布 Microbial displacement oil, Field application, Physical model experiment, Microbesmigration and distribution
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  • 1Li J, Liu JS, Trefry MG, et al. Interactions ofmicrobial enhanced oil recovery processes[J].Transport in Porous Media, 2011, 87(1): 77—104.
  • 2Nerurkar AS, Suthar HG, Desal AJ. Biosystemdevelopment for microbial enhanced oil recovery(MEOR)[J]. Microorganisms in SustainableAgriculture and Biotechnology, 2012(2): 711-737.
  • 3Brown LR. Microbial enhanced oil recovery(MEOR)[J]. Current Opinion in Microbiology, 2010,13(3): 316-320.
  • 4杨凌,王世建.川北油田微生物吞吐采油技术研究[J].内蒙古石油化工,2009(6):75-79. 被引量:5
  • 5汪卫东,魏斌,谭云贤,王修林.微生物采油需要进一步解决的问题[J].石油勘探与开发,2004,31(6):88-91. 被引量:43
  • 6翁天波.油井微生物调剖堵水方法:中国,CN101131075[P], 2008.
  • 7徐卫华,雷光伦,薛芸,许涛,沈勇,马惠,雷世华,周桂银.微生物防蜡作用机理研究[J].西南石油学院学报,2005,27(6):68-72. 被引量:9
  • 8雷光伦,徐卫华,张忠智,陈辉.微生物生长吸附规律及防蜡机理实验研究[J].石油大学学报(自然科学版),2005,29(1):65-69. 被引量:6
  • 9Maharaj U, May M,Imbert MP_ Microbial enhancedoil recovery [J]. Developments in Petroleum Science,1989,22(17):423-450.
  • 10Alirezal SA, Shahab AS, Hassan M, et al. The insitu microbial enhanced oil recovery in fracturedporous media[J]. Journal of Petroleum Science andEngineering, 2007,58(1/2): 161-172.

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