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[1]董龙,等.微生物采油技术在提高原油采收率中的应用[J].武汉工程大学学报,2014,(08):32-37.[doi:103969/jissn16742869201408006]
 DONG Long,ZHANG Bei bei,LIU Yong jian.Application of microbial enhanced oil recovery technology[J].Journal of Wuhan Institute of Technology,2014,(08):32-37.[doi:103969/jissn16742869201408006]
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微生物采油技术在提高原油采收率中的应用(/HTML)
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《武汉工程大学学报》[ISSN:1674-2869/CN:42-1779/TQ]

卷:
期数:
2014年08期
页码:
32-37
栏目:
其他
出版日期:
2014-08-31

文章信息/Info

Title:
Application of microbial enhanced oil recovery technology
文章编号:
16742869(2014)08003206
作者:
董龙1 2张蓓蓓3刘永建2
1.东北石油大学石油工程学院,黑龙江 大庆 163318;2.大庆师范学院化学化工学院,黑龙江 大庆163712;3.大庆市环境保护局,黑龙江,大庆,163316
Author(s):
DONG Long12 ZHANG Beibei3 LIU Yongjian1
1. Petroleum Engineering Institute, Northeast Petroleum University, Daqing 163318,China;2. School of Chemistry and Chemical Engineering, Daqing Normal University, Daqing 163712,China;3.Daqing Municipal Environmental Protection Bureau, Daqing 163316,China
关键词:
微生物采油技术机理菌种筛选原油采收率.
Keywords:
MEOR technical mechanism strain screening oil recove
分类号:
Q939
DOI:
103969/jissn16742869201408006
文献标志码:
A
摘要:
为了使微生物采油技术在提高原油采收率中能够更广泛的得到应用,综述了分析微生物采油技术(MEOR)的发展历史、提高采收率技术(EOR)机理和主要方法,分析了常用微生物采油技术的优势和不足之处,微生物采油技术中菌种的筛选方法和筛选原则,以及进行菌种性能评价应侧重的几个方面.最后对微生物技术在提高原油采收率中的进一步应用作出展望,预计在今后的油田开采中,微生物采油技术的应用将更加广泛并会起主导作用.
Abstract:
For widely use of microbial enhanced oil recovery technology (MEOR) in reinforcing production of oil field, the development and the main mechanism of MEOR were reviewed. The advantages and disadvantages of the main methods of MEOR in process of oil production were analyzed, and the selected methods and principles, and several aspects that should be placed emphasis were proposed. The application of microbial oil recovery technology will be more widely used and will play a leading role in the future of oil field exploitation.

参考文献/References:

[1]LI J, LIU J S, TREFRY M G, et al. Interactions of microbial enhanced oil recovery process [J]. Transport in Porous Media, 2011, 87(1):77104. [2]BROWN L R. Microbial enhanced oil recovery [J]. Current Opinion in Microbiology, 2010, 13(3):316320.[3]王霞,潘成松,范舟,等.微生物采油技术的发展现状[J]. 石油地质与工程,2007,21(5):6568 WANG Xia, PAN Chengsong, FAN Zhou, et al. Development situation of microbe oil recovery technology[J]. Petroleum Geology and Engineering, 2007, 21(5):6568. (in Chinese)[4]李青,吴刚,谢刚,等. 低温稠油油藏微生物采油菌的筛选评价研究[J].石油钻采工艺,2011,33(2):114116. LI Qing, WU Gang, XIE gang, et al. Research on evaluation of microbe oil recovery bacterium of lowtemperature inspected pool [J]. Drilling & Production Technology, 2011,33(2):114116.(in Chinese)[5]许建红. 低渗透油藏产能主要影响因素分析与评价[J].西南石油大学学报:自然科学版,2012,34 (2):144147.XU Jianhong. Main influence factor analysis and evaluation of the productivity in low permeability oil reservoirs[J]. Journal of Southwest Petroleum University: Science &Technology Edition, 2012,34(2):144147.(in Chinese)[6]夏小雪,朱维耀,李娟,等.油藏内源微生物生长代谢及驱油特性研究[J].石油天然气学报,2014,36(1):122126. XIA Xiaoxue, ZHU Weiyao, LI Juan, et al. Reservoir indigenous microoganisms growth metabolism and its oil displacement characteristics[J]. Journal of Oil and Gas Technology, 2014,36(1):122126 . (in Chinese)[7]李文宏,王闪,张永强,等. 高盐低渗油藏内源微生物驱油潜力实验[J].化学与生物工程,2014,31(1):5560.LI Wenhong, WANG Shan, ZHANG Yongqiang, et al. Experimental study of potential of indigenous microbial flooding in high salt and low permeability oilfield [J]. Chemistry & Bioengineering,2014,31(1):5560. (in Chinese)[9]VAN H J D, SINGH A, WARD O P, et al. Recent advances in petroleum microbiology [J]. Microbiology and Molecular Biology Reviews, 2003, 67(4):503549.[10]REDDY L V A, WEE Y J, YUN J S, et al. Optimization of alkaline protease production by batch culture of Bacillus sp. RKY3 though placketburman and response surface methodological approaches [J]. Bioresource Technology, 2008, 99(7):22422249.[11]ISLAM M R. Emerging technologies in EOR \[J\]. Energy Sources, 1999, 21(1): 97111.[12]WANG Xiuyuan. Advances about researches of microbial enhanced oil recovery [J]. Russia Microbiology, 1995, 22 (6):383384.[13]SUN S S, ZHANG Z Z, LUO Y J, et al. Exopolysaccharide production by a genetically engineered enterobacter cloacae strain for microbial enhanced oil recovery [J]. Bioresource Technology, 2011, 10 (2):61536158.[14]包木太,汪卫东,王修林,等.激活内源微生物提高原油采收率技术[J]. 油田化学,2002, 16 (4):382386.BAO Mutai, WANG Weidong, WANG Xiulin, et al. Microbial enhanced oil recovery by activation of strata micro flora: a review[J]. Oilfield Chemistry, 2002, 16(4):382386.(in Chinese)[15]ARIMA K, KAKINUMA A, TAMURA G. Surfactant, a crystal line peptide lipid surf act ant produced by Bacillus subtitles: Isolation, characterization and its inhibit ion of fibrin clot formation [J]. Biochemist Biophysics Res Common, 1968, 31(3):488494.[16]AMANI H, SARRAFZADEN M H, HAGHIGHI M, et al. Comparative study of biosurfactant producing bacteria in MEOR application [J]. J Petro Sci Eng, 2010, 75(2):209214. [17]SONG Z Y, GUO L Y, QU Y Y, et al. Microbial surfactantenhanced mineral oil recovery under laboratory conditions [J]. Colloid Surface Biointerf, 2008, 63(1):7382. [18]PRONSUNTHORNTAWEE. Laboratory study on activating indigenous microorganisms to enhance oil recovery in Shengli oilfield [J]. J Petro Sci Eng, 2009, 66(1):4246. [19]MAC G D B, SURDAM R C. Definitional carboxylic acid anions in oilfield waters [J]. Organ Geochemical, 1988, 12(3):245259[20]游靖,李青,刘洋,等. 一株高效驱油菌株HB2降解原油活性的研究[J].生物技术通报,2013,11(2):170174.YOU Jing, LI Qing, LIU Yang, et al. Activities of an oil degrading bacterial strain HB2[J].Biotechnology Bulletin, 2013,11(2):170174. (in Chinese)[21]刘涛, 宋智勇,曹功泽,等. 微生物驱油过程中模拟地层条件对微生物生长的影响[J]. 油田化学,2013,30(1):9295.[22]柯从玉,吴刚,游靖,等..微生物采油技术在宝力格油田规模化应用研究[J].油田化学,2013,30(2):246250.KE Congyu, WU Gang, You Jing, et al. The large scale application research on overall microbial flooding technology in baolige oilfield[J]. Oilfield Chemistry,2013,30(2):246250. (in Chinese)[23]伍锐东,黄旭平,张华军.微生物采油技术的研究进展[J]. 内蒙古石油化工,2008,32(10):910. WU Yuedong, HUANG Xuping, ZHANG Huajun. Developmnet of microbial enhanced oil recovery research [J]. Inner Mongolia Petrochemical Industry, 2008, 32(10):910. (in Chinese)[24]PEYPOUX F, BONMATIN J M, WALLACH J. Recent trends in the biochemistry of surfactant [J]. Apply Microbial Biotech, 1999, 51(5):553563.[25]王大威,张健,吕鑫,等.一株铜绿假单胞菌及其产生的鼠李糖脂特性研究[J]. 生物技术通报,2012(7):163169.WANG Dawei,ZHANG Jian,LV Xin,et al. Study on characteristics of a rhamnolipid biosurfactant producing bacterium and rhamnolipid biosurfactant[J]. Biotechnology Bulletin, 2012(7):163169.(in Chinese)[26]窦启龙,陈践发,王杰,等.微生物采油技术的研究进展及展望[J]. 天然气地球科学,2004,15(5):559563. DOU Qilong, CHEN Jianfa, WANG Jie, et al. Advances in researches and oulook for microbial enhanced oil recovery [J]. Natural Gas Geoscience, 2004, 15(5):559563. (in Chinese)[27]刘保磊,常毓文,杨玲,等.油层法微生物采油代谢产物生产量的理论分析[J]. 中国石油大学学报,2014,38(2):165170. LIU Baolei, CHANG Yuwen, YANG Ling, et al. Theoretical production of metabolites for microbial enhanced oil recovery in reservoirs[J]. Acta Petrolei Sinica, 2014, 38(2):165170. (in Chinese)[28]DANIEL R M, COWAN D A. Biomolecular stability and life at high temperature [J]. Cell. Mol. Life Sci, 2000, 57:250264.[29]申坤,李斌,黄战卫,等.复合本源微生物驱油技术在低渗透油藏的应用研究[J]. 西安石油大学学报,2013,28(3):6369.SHEN Kun, LI Bin, HUANG Zhanwei, et al. Application of composite indigenous microorganism oil displacement technology in lowpermeability reservoirs [J]. Journal of Xi’an Shiyou University (Natural Science Edition), 2013, 28(3):6369. (in Chinese)[30]BOCK M , BOSECKER K. Occurrence of biosurfactant producing bacteria in oil reservoirs, contaminated soils, and surface waters in Northern Germany[J]. Geol1 Jahrbuch,1997, 5 (103) : 1471571.[31]BECKMAN J W. Action of bacteria on mineral oil [J]. Ind Eng New, 1926, 4(10):3.[32]STEWART T L, KIM D S. Modeling of biomassplug development and propagation in porousmedia\[J\]. Biochem Eng J, 2004, 17(1):107119.[33]MEYER J, CLAY M D, JOHNSON M K, et al. A hyperthermophilic planttype foredooming form aquifer aeolicus is stabilized by a dissuade bond \[J\]. Biochemistry, 2002,41(10):30963108.[34]伍晓林,侯兆伟,李尉,等.原油黏附性细菌的运动及其调控研究[J]. 油田化学,2013,30(1):8791.WU Xiaolin , HOU Zhaowei, LI Wei, et al. The Study on migration of adhesive bacteria to crude oil[J]. Oilfield Chemistry, 2013, 30(1):8791. (in Chinese)[35]王凤兰,王志瑶,王晓东.朝50区块微生物驱先导性试验效果及认识[J]. 大庆石油地质与开发,2008,12(03):102105,135. WANG Fenglan, WANG Zhiyao, WANG Xiaodong. Meor pilot effect and pretension on block 50 of Chao yang gou oil field [J]. Petroleum Geology & Oilfield Development in Daqing, 2008, 12(3):102105,135. (in Chinese)[36]NZINA T N, GRIRORYAN A A, FENG Y, et al. Microbiological and production characteristics of the hightemperature Kongdian petroleum reservoir revealed during field trial of biotechnology for the enhancement of oil recovery[J]. Microbiology, 2007, 76(5):340353.[37]NZINA T N, GRIRORYAN A A, SHESTAKOVA N M, et al. Microbiological investigations of hightemperature horizons of the Kongdian petroleum reservoir in connection with field trial of a biotechnology for enhancement of oil recovery[J]. Microbiology, 2007, 76(5):329339. [38]BORDOLOI N K, KONWAR B K. Microbial surfactantenhanced enhanced mineral oil recovery under laboratory conditions. Colloids and Surfaces[J]. Biointerface, 2008, 6(3):7382[39]DASTGHEIBZ S M M, AMOOZEGARMA, ELAHI E, Asad S and Banat IM. Bioemulsifier production by a halothermophilic Bacillus strain with potential applications in microbial enhanced oil recovery[J]. Biotechnology Letters, 2008, 30(6):263270[40]DASTGHEIBZ SMM, AMOOZEGARMA, ELAHI E, et al. Bioemulsifier production by a halothermophilic Bacillus strain with potential applications in microbial enhanced oil recovery\[J\]. Biotechnology Letters, 2008, 30(6):263270.[41]BRYANT S L, LOCKHART T P. Reservoir engineering analysis of microbial enhanced oil recovery [J]. SPE Reservoir Evaluation & Engineering,2005,5(5):365374.[42]NAMIA I A, Wang J I, MU BOZHONG. Isolation and characterization of a biosurfactant producing strain, Brevibacilis brevis Hobl[J]. J Ind Microbial Biotechnology, 2008, 35(2):15971604[43]柯从玉,吴刚,游靖,等.采油微生物在微驱过程中的生长、运移及分布规律. 微生物学通报,2013,40(5):849856. KE Congyu, WU Gang, You Jing, et al. The growth, migration and distribution law of microbes during microbial displacement oil[J]. Microbiology China, 2013, 40(5):849856. (in Chinese)[44]汪卫东. 微生物采油技术研究及试验[J].石油钻采工艺,2012,34(1):107113.WANG Weidong. Laboratory research and field trials of microbial oil recovery technique [J]. Drilling & Production Technology, 2012, 34(1):107113. (in Chinese)

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备注/Memo

备注/Memo:
收稿日期:20140327基金项目:黑龙江省青年科学基金项目(QC2012C128)作者简介:董龙(1982),男,黑龙江大庆人,讲师,硕士.研究方向:油田化学理论及工程.
更新日期/Last Update: 2014-09-16