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The Selection and Breeding of a Novel Microorganism Strain I and Investigation of Core Model Experiment for MEOR 被引量:4

The Selection and Breeding of a Novel Microorganism Strain I and Investigation of Core Model Experiment for MEOR
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摘要 This paper introduces the results of selecting and breeding a micro-organism, Strain I, and its core model experiment investigation for microbial enhanced oil recovery (MEOR). Strain I was separated from the formation water of the Dagang oil field, with analytical results showing that Strain I is a gram-positive bacillus. A further study revealed that this strain has an excellent tolerance of environmental stresses: It can survive in conditions of 70℃, 30 wt% salinity and pH3.5-9.4. Strain I can metabolize biosurfactants that could increase the oil recovery ratio, use crude oil as the single carbon source, and decompose long-chain paraffin with a large molecular weight into short-chain paraffin with a small molecular weight. The core model experiment shows that Strain I enhances oil recovery well. Using 2 vol% of the fermentation solution of Strain I to displace the crude oil in the synthetic plastic bonding core could increase the recovery ratio by 21.6%. This paper introduces the results of selecting and breeding a micro-organism, Strain I, and its core model experiment investigation for microbial enhanced oil recovery (MEOR). Strain I was separated from the formation water of the Dagang oil field, with analytical results showing that Strain I is a gram-positive bacillus. A further study revealed that this strain has an excellent tolerance of environmental stresses: It can survive in conditions of 70℃, 30 wt% salinity and pH3.5-9.4. Strain I can metabolize biosurfactants that could increase the oil recovery ratio, use crude oil as the single carbon source, and decompose long-chain paraffin with a large molecular weight into short-chain paraffin with a small molecular weight. The core model experiment shows that Strain I enhances oil recovery well. Using 2 vol% of the fermentation solution of Strain I to displace the crude oil in the synthetic plastic bonding core could increase the recovery ratio by 21.6%.
出处 《Petroleum Science》 SCIE CAS CSCD 2005年第2期95-102,共8页 石油科学(英文版)
关键词 BIOSURFACTANT THERMOTOLERANCE salinity tolerance core model flooding experiment microbial enhanced oil recovery. Biosurfactant, thermotolerance, salinity tolerance, core model flooding experiment, microbial enhanced oil recovery.
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参考文献3

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  • 1上海社科院<2004中国国际地位报告>课题组.论中国的石油安全问题[J].石油化工技术经济,2004,20(3):7-11. 被引量:8
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  • 3赵敏,马宏瑞.石油降解菌的降解特性研究[J].油气田环境保护,2007,17(2):8-10. 被引量:5
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