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Production Characterization and Application of Bacillus licheniformis W16 Biosurfactant in Enhancing Oil Recovery

机译:地衣芽孢杆菌W16生物表面活性剂的生产表征及应用

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摘要

The biosurfactant production by Bacillus licheniformis W16 and evaluation of biosurfactant based enhanced oil recovery (EOR) using core-flood under reservoir conditions were investigated. Previously reported nine different production media were screened for biosurfactant production, and two were further optimized with different carbon sources (glucose, sucrose, starch, cane molasses, or date molasses), as well as the strain was screened for biosurfactant production during the growth in different media. The biosurfactant reduced the surface tension and interfacial tension to 24.33 ± 0.57 mN m−1 and 2.47 ± 0.32 mN m−1 respectively within 72 h, at 40°C, and also altered the wettability of a hydrophobic surface by changing the contact angle from 55.67 ± 1.6 to 19.54°± 0.96°. The critical micelle dilution values of 4X were observed. The biosurfactants were characterized by different analytical techniques and identified as lipopeptide, similar to lichenysin-A. The biosurfactant was stable over wide range of extreme environmental conditions. The core flood experiments showed that the biosurfactant was able to enhance the oil recovery by 24–26% over residual oil saturation (Sor). The results highlight the potential application of lipopeptide biosurfactant in wettability alteration and microbial EOR processes.
机译:研究了地衣芽孢杆菌W16的生物表面活性剂生产以及在储层条件下使用岩心驱油评估基于生物表面活性剂的强化采油率(EOR)。先前报道的9种不同的生产培养基被筛选用于生物表面活性剂的生产,其中两种用不同的碳源(葡萄糖,蔗糖,淀粉,甘蔗糖蜜或大枣糖蜜)进行了进一步优化,并且在菌株生长过程中筛选了生物表面活性剂的生产。不同的媒体。生物表面活性剂在40°C和72 h内将表面张力和界面张力分别降低至24.33±0.57 mN m -1 和2.47±0.32 mN m -1 通过将接触角从55.67±1.6更改为19.54°±0.96°,也改变了疏水性表面的润湿性。观察到临界胶束稀释值为4X。通过不同的分析技术对生物表面活性剂进行了表征,并鉴定为脂肽,类似于地衣素-A。生物表面活性剂在各种极端环境条件下均稳定。岩心驱油实验表明,与残留油饱和度(Sor)相比,生物表面活性剂能够提高采油量24-26%。结果突出了脂肽生物表面活性剂在润湿性改变和微生物EOR过程中的潜在应用。

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