Elakkiya Vadivel Tamil, SureshKumar Periyasamy, Alharbi Naiyf S, Kadaikunnan Shine, Khaled Jamal M, Govindarajan Marimuthu
Department of Biotechnology, BIT Campus, Anna University, Tiruchirappalli 620024, India.
Department of Botany and Microbiology, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.
Saudi J Biol Sci. 2020 Jul;27(7):1892-1899. doi: 10.1016/j.sjbs.2020.04.001. Epub 2020 Apr 10.
Microbial enhanced oil recovery (MEOR) is a kind of enhanced oil recovery (EOR) development, often used as a tertiary stage where oil recovery is no longer possible utilizing primary and secondary conventional techniques. Among a few potential natural operators valuable for MEOR, biosurfactants, biopolymers and biosurfactant based nanoparticles assume key jobs. Biosurfactant which are produced by microorganisms' act as are surface active agents that can be used as an alternative to chemically synthesized surfactants. TEN01, a gram-negative bacterium isolated from the petroleum industry is a potential biosurfactant (Rhamnolipid) producer using cassava waste as the substrate. This work focuses on production and characterization of rhamnolipid from TEN01 and its use in enhanced oil recovery. The effectiveness of Chitosan that is deacetylated form of chitin which is a biopolymer that provides density and viscosity to the fluids is not known in enhanced oil recovery yet and so it is studied. Moreover, the fabrication of biosurfactant-mediated silver nanocrystals and its application in enhanced oil recovery is also studied. Sand-Pack column was constructed and the mechanism of oil recovery in the column was studied. While incubating the crude oil containing sand packed column with Biosurfactant-biopolymer and brine flooding in the ratio of 1:2, and Biosurfactant incubation - flooding with 3 g/l of biopolymer was found to be 34.28% and 44.5% respectively. The biosurfactant based silver nanoparticles are non-toxic and have better stability when compared to chemically synthesized silver nanoparticles. The oil recovery percentage by chemical based Ag NPs and biosurfactant based Ag NPs are 14.94% and 14.28% respectively.
微生物强化采油(MEOR)是一种强化采油(EOR)开发方式,通常用作三级采油阶段,此时利用一次和二次常规技术已无法实现采油。在对MEOR有价值的一些潜在天然作用剂中,生物表面活性剂、生物聚合物和基于生物表面活性剂的纳米颗粒起着关键作用。由微生物产生的生物表面活性剂可作为表面活性剂,用作化学合成表面活性剂的替代品。TEN01是一种从石油工业中分离出的革兰氏阴性细菌,它以木薯废料为底物,是一种潜在的生物表面活性剂(鼠李糖脂)生产者。这项工作专注于从TEN01生产和表征鼠李糖脂及其在强化采油中的应用。壳聚糖是几丁质的脱乙酰化形式,是一种为流体提供密度和粘度的生物聚合物,其在强化采油中的有效性尚不清楚,因此对其进行了研究。此外,还研究了生物表面活性剂介导的银纳米晶体的制备及其在强化采油中的应用。构建了填砂柱,并研究了柱内的采油机理。在用生物表面活性剂 - 生物聚合物与盐水以1:2的比例对含原油的填砂柱进行孵育时,发现用3 g/l生物聚合物进行生物表面活性剂孵育 - 驱替时,采油率分别为34.28%和44.5%。与化学合成的银纳米颗粒相比,基于生物表面活性剂的银纳米颗粒无毒且具有更好的稳定性。基于化学的银纳米颗粒和基于生物表面活性剂的银纳米颗粒的采油率分别为14.94%和14.28%。