2Hiebert F K, Zumberge J, Rouse B, et al. Mechanism and environmental effects on MEOR induced by the ALPHA process[Z]. Final report, 1993, DOE/BC/14205-17.
3Sperl P L, Sperl G T. New microorganisms and process for MEOR[Z]. Final report, 1993, DOE/BC/14663-11.
4Belyaev S S, et al. Halotolerant and extremely halophilic oil-oxidizing bacteria in oil fields[A]. Dev. Pet. Sci., 1993, 39(Microbial Enhancement of Oil Recovery: Recent Advances):79- 88.
5Milekhina E I, et al. Characterization of a hydrocarbon-oxidizing Rhodococcus erythropolis strain isolated from an oil field[J]. Microbiology, 1998, 67(3): 271-274.
6Rozanova E P, et al. Microbiological processes in a high-temperature oil field[J]. Microbiology, 2001,70(1): 102-110.
7Laurinavicius K, et al. Methane-forming bacteria of oil fields[J]. Prepr. -Am. Chem. Soc., Div. Pet. Chem. , 1983, 28(3): 805-809.
8Rozanova E P, et al. Microbial processes in a West Siberian oil field flooded with waters containing a complex of organic compounds[J]. Microbiology, 1997, 66(6): 718-725.
9Telang A J, et al. Effect of nitrate injection on the microbial community in an oil field as monitored by reverse sample genome probing[J]. Applied and Environmental Microbiology.1997, 63:1785- 1793.
10Coates JD, ChisholmJ L, KnappRM, et al. Microbially enhanced oil recovery field pilot, Payne County, Oklahoma[A].Dev. Pet. Sci., 1993, 39(Microbial Enhancement of Oil Recovery: Recent Advances), 197-205.