Impact of an indigenous microbial enhanced oil recovery field trial on microbial community structure in a high pour-point oil reservoir
详细信息    查看全文
  • 作者:Fan Zhang (1)
    Yue-Hui She (23) sheyuehui@263.net
    Hua-Min Li (4)
    Xiao-Tao Zhang (1)
    Fu-Chang Shu (2)
    Zheng-Liang Wang (2)
    Long-Jiang Yu (3)
    Du-Jie Hou (1) hdj@cugb.edu.cn
  • 关键词:Oil reservoir – ; Indigenous microbial enhanced oil recovery (MEOR) – ; Microbial community – ; Stimulated microorganisms
  • 刊名:Applied Microbiology and Biotechnology
  • 出版年:2012
  • 出版时间:August 2012
  • 年:2012
  • 卷:95
  • 期:3
  • 页码:811-821
  • 全文大小:537.1 KB
  • 参考文献:1. Amann RI, Ludwig W, Schleifer KH (1995) Phylogenetic identification and in situ detection of individual microbial cells without cultivation. Microbiol Rev 59(143):169
    2. Bailey SA, Kenney TM, Schneider DR (2001) Microbial enhanced oil recovery: diverse successful applications of biotechnology in the oil field. SPE 72129. Proceedings of SPE Asia Pacific Improved Oil Recovery Conference. Society of Petroleum Engineers, Richardson
    3. Banat IM (1995) Biosurfactants production and use in microbial enhanced oil recovery and pollution remediation: a review. Bioresour Technol 51:1–12
    4. Banat IM, Franzetti A, Gandolfi I, Bestetti G, Martinotti MG, Fracchia L, Smyth TJ, Marchant R (2010) Microbial biosurfactants production, applications and future potential. Appl Microbiol Biotechnol 87:427–444
    5. Barkay T, Navon-Venezia S, Ron EZ, Rosenberg E (1999) Enhancement of solubilization and biodegradation of polyaromatic hydrocarbons by bioemulsifier alasan. Appl Environ Microbiol 65:2697–2702
    6. Barth T, Riis M (1992) Interactions between organic acid anions in formation waters and reservoir mineral phases. Org Geochem 19:455–482
    7. Basso O, Lascourreges JF, Jarry M, Magot M (2005) The effect of cleaning and disinfecting the sampling well on the microbial communities of deep subsurface water samples. Environ Microbiol 7:13–21
    8. Becker JR (2000) Oilfield paraffin treatments: hot oil and hot water compared to crystal modifiers. SPE 63123. Proceedings of SPE Annual Technical Conference Engineers and Exhibition. Society of Petroleum Engineers, Dallas
    9. Bordoloi NK, Konwar BK (2007) Microbial surfactant-enhanced mineral oil recovery under laboratory conditions. Colloid Surf B Biointerfaces 63(1):73–82
    10. Brown F, Maure A, Warren A (2005) Microbial-induced controllable cracking of normal and branched alkanes in oils. United States Patent 6905870
    11. Bryant SL, Lockhart TP (2002) Reservoir engineering analysis of microbial enhanced oil recovery. Soc Pet Eng Reserv Eval Eng 5:365–374
    12. Canganella F, Juan M, Gonzalez MY, Kato C, Horikoshi K (1997) Pressure and temperature effects on growth and viability. Arch Microbiol 168:1–7
    13. Dahle H, Garshol F, Madsen M, Birkeland NK (2008) Microbial community structure analysis of produced water from a high-temperature North Sea oil-field. Antonie Van Leeuwenhoek 93:37–49
    14. Etoumi A (2007) Microbial treatment of waxy crude oils for mitigation of wax precipitation. J Pet Sci Eng 55:111–121
    15. Grabowski A, Nercessian O, Fayolle F, Blanchet D, Jeanthon C (2005) Microbial diversity in production waters of a low-temperature biodegraded oil reservoir. FEMS Microbiol Ecol 54:427–443
    16. He Z, Mei B, Wang W, Sheng J, Zhu S, Wang L, Yen TF (2003) A pilot test using microbial paraffin-removal technology in Liaohe oilfield. Pet Sci Technol 21:201–210
    17. Kaye JZ, Baross JA (2004) Synchronous effects of temperature, hydrostatic pressure, and salinity on growth, phospholipid profiles, and protein patterns of four Halomonas species isolated from deep-sea hydrothermal-vent and sea surface environments. Appl Environ Microbiol 79:6220–6229
    18. Kieft TL, Phelps TJ, Frederickson JK (2007) Drilling, coring, and sampling subsurface environments. In: Hurst CJ, Crawford RL, Garland JL, Lipson DA, Mills AL, Stetzenbach LD (eds) Manual of environmental microbiology. ASM, Washington, pp 799–817
    19. Lazar I, Voicu A, Nicolescu C, Mucenica D, Dobrota S, Petrisor IG, Stefanescu M, Sandulescu L (1999) The use of naturally occurring selectively isolated bacteria for inhibiting paraffin deposition. J Pet Sci Eng 22:161–169
    20. Li H, Yang S-Z, B-Z M, Z-F R, Zhang J (2007) Molecular phylogenetic diversity of the microbial community associated with a high-temperature petroleum reservoir at an offshore oilfield. FEMS Microbiol Ecol 60:74–84
    21. Lysnes K, B酶dtker G, Torsvik T, Eva 脴, Bj酶rnestad ES (2009) Microbial response to reinjection of produced water in an oil reservoir. Appl Microbiol Biotechnol 83:1143–1157
    22. Magot M, Ollivier B, Patel BKC (2000) Microbiology of petroleum reservoirs. Anton Leeuw Int J G 77:103–116
    23. Misra S, Baruah S, Singh K (1995) Paraffin problems in crude oil production and transportation: a review. Soc Pet Eng Prod Facil 10:50–54
    24. Nazina TN, Griror’yan AA, Feng Q, Shestakova NM, Babich TL, Pavlova NK, Ivoilov VS, Ni F, Wang J, She Y, Xiang T, Mai B (2007a) Microbiological and production characteristics of the high-temperature Kongdian petroleum reservoir revealed during field trial of biotechnology for enhancement of oil recovery. Microbiology 76:297–309
    25. Nazina TN, Griror'yan AA, Shestakova NM, Babich TL, Ivoilov VS, Feng Q, Ni F, Wang J, She Y, Xiang T, Luo Z, Belyaev SS (2007b) Microbiological investigations of high-temperature horizons of the Kongdian petroleum reservoir in connection with field trial of a biotechnology for enhancement of oil recovery. Microbiology 76:287–296
    26. Okpokwasili GC, Ibiene AA (2006) Enhancement of recovery of residual oil using a biosurfactant slug. Afr J Biotechnol 5:453–456
    27. Orphan VJ, Taylor LT, Hafenbradl D, Delong EF (2000) Culture-dependent and culture-independent characterization of microbial assemblages associated with high temperature petroleum reservoirs. Appl Environ Microbiol 66:700–711
    28. Simpson DR, Knapp RM, Youssef N, Duncan KE, McInerney MJ, Brackin C (2007) Microbial stimulation treatment of high water-cut wells in the viola formation, Pontotoc County, OK. Proceedings of Tertiary Oil Recovery Conference. Tertiary Oil Recovery Project, University of Kansas, Lawrence
    29. Wang Q, Fang X, Bai B, Liang X, Shuler PJ, Goddard WA, Tang Y (2007) Engineering bacteria for production of rhamnolipid as an agent for enhanced oil recovery. Biotechnol Bioeng 98:842–853
    30. Youssef N, Simpson DR, Duncan KE, McInerney MJ, Folmsbee M, Fincher T, Knapp RM (2007) In situ biosurfactant production by Bacillus strains injected into a limestone petroleum reservoir. Appl Environ Microbiol 73:1239–1247
    31. Youssef N, Elshahed MS, McInerney MJ (2009) Microbial process in oil field: culprits, problems, and opportunities. Adv Appl Microbiol 66:141–251
    32. Zhang CY, Zhang JC (1993) A pilot field test of EOR by in-situ microorganism fermentation in the Daqing Oilfield. Dev Pet Sci 39:231–244
    33. Zhang F, She YH, Ma SS, Hu JM, Banat IM, Hou DJ (2010) Response of microbial community structure to microbial plugging in a mesothermic petroleum reservoir in China. Appl Microbiol Biotechnol 88:1413–1422
  • 作者单位:1. The Key Laboratory of Marine Reservoir Evolution and Hydrocarbon Accumulation Mechanism, Ministry of Education, China; School of Energy Resources, China University of Geosciences (Beijing), Beijing, 100083 China2. College of Chemistry and Environmental Engineering, Yangtze University, Jingzhou, Hubei 434023, China3. College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430079 China4. Beijing Bioscience Research Center, Beijing, 100085 China
  • ISSN:1432-0614
文摘
Based on preliminary investigation of microbial populations in a high pour-point oil reservoir, an indigenous microbial enhanced oil recovery (MEOR) field trial was carried out. The purpose of the study is to reveal the impact of the indigenous MEOR process on microbial community structure in the oil reservoir using 16Sr DNA clone library technique. The detailed monitoring results showed significant response of microbial communities during the field trial and large discrepancies of stimulated microorganisms in the laboratory and in the natural oil reservoir. More specifically, after nutrients injection, the original dominant populations of Petrobacter and Alishewanella in the production wells almost disappeared. The expected desirable population of Pseudomonas aeruginosa, determined by enrichment experiments in laboratory, was stimulated successfully in two wells of the five monitored wells. Unexpectedly, another potential population of Pseudomonas pseudoalcaligenes which were not detected in the enrichment culture in laboratory was stimulated in the other three monitored production wells. In this study, monitoring of microbial community displayed a comprehensive alteration of microbial populations during the field trial to remedy the deficiency of culture-dependent monitoring methods. The results would help to develop and apply more MEOR processes.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700