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Kinetics of hydrocarbon extraction from oil shale using biosurfactant producing bacteria

机译:利用产生生物表面活性剂的细菌从油页岩中提取烃的动力学

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This study was done to extract hydrocarbon compounds from El-Lajjun oil shale using biosurfactant produced from two strains Rhodococcus erythropolis and Rhodococcus ruber. The results have shown that, optimal biosurfactant production was found using naphthalene and diesel as a carbon source for R. erthropolis and R. ruber, respectively. Optimum nitrogen concentration was 9 g/l and 7 g/l for R. erthropolis and R. ruber, respectively. Optimum K_2HPO_4 to KH_2PO_4 ratio, temperature, pH, and agitation speeds were 2:1, 37℃, 7 and 200 rpm. Under optimal conditions R. erthropolis and R. ruber produced 5.67 and 6.9 g/1 biosurfactant, respectively. Maximum recovery of oil achieved with hydrogen peroxide pre-treatment was 25% and 26% at biosurfactant concentration of 8 g/1 and 4 g/1 for R. erthropolis and R. ruber, respectively. The extent desorption of hydrocarbons from the pre-treated oil shale by biosurfactant were inversely related to the concentration of high molecular weight hydrocarbons, asphaltenes compounds. Pre- treatment of oil shale with hydrogen peroxide produced better improvement in aromatic compounds extraction in comparison with improvement which resulted from demineralization of the oil shale.
机译:这项研究的完成是使用由红细菌红球菌和红球菌产生的生物表面活性剂从El-Lajjun油页岩中提取烃类化合物。结果表明,使用萘和柴油分别作为拟南芥和橡胶的碳源时,发现了最佳的生物表面活性剂生产。 erthropolis和R. ruber的最佳氮浓度分别为9 g / l和7 g / l。 K_2HPO_4与KH_2PO_4的最佳比例,温度,pH和搅拌速度分别为2:1、37℃,7和200 rpm。在最佳条件下,拟南芥和赤霉分别产生了5.67和6.9 g / 1的生物表面活性剂。用过氧化氢预处理获得的最大油回收率是:在生表面活性剂浓度为8 g / 1和4 g / 1的生物表面活性剂中,R。erthropolis和R. ruber。生物表面活性剂从预处理后的油页岩中解吸碳氢化合物的程度与高分子量碳氢化合物,沥青质化合物的浓度成反比。与因油页岩脱矿而产生的改善相比,用过氧化氢预处理油页岩在芳烃化合物的提取方面有更好的改善。

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