College of Chemistry and Chemical Engineering, Xi'an Shiyou University, Xi'an 710065, China.
School of Chemical Engineering, Northwest University, Xi'an 710069, Shaanxi, China.
Bioresour Technol. 2019 Sep;287:121442. doi: 10.1016/j.biortech.2019.121442. Epub 2019 May 8.
Biodegradation of crude heavy oil was investigated with Chelatococcus daeguensis HB-4 that was isolated from the produced fluid of Baolige Oilfield in China. Batch growth characterization and crude oil degradation tests confirmed HB-4 to be facultative anaerobic and able to degrade heavy oil. The oil degradation was found to occur through degrading long hydrocarbons chains to shorter ones, resulting in oil viscosity reduction. By mixing crude oil with glucose, or using sole crude oil as carbon source, the content of light fractions (C-C) increased by 4.97% while heavy fractions (C-C) decreased by 7.98%. It was also found that bioemulsifiers were produced rather than commonly observed biosurfactants in the fermentation process, which was attributed to the extracellular degradation of hydrocarbons. Core flooding tests demonstrated 20.5% oil recovery by microbial enhancement, and 59.8% viscosity reduction, showing potential of strain HB-4 for application in the oil industry, especially in enhanced heavy oil recovery.
从中国宝力格油田产出液中分离出的 Chelatococcus daeguensis HB-4 可用于降解稠油。批式生长特性和稠油降解试验证实 HB-4 为兼性厌氧菌,能够降解稠油。油降解是通过将长链烃降解为短链烃来实现的,从而降低了油的粘度。通过将稠油与葡萄糖混合,或仅使用稠油作为碳源,可以使轻馏分(C-C)的含量增加 4.97%,而重馏分(C-C)的含量减少 7.98%。此外,在发酵过程中还发现了生物乳化剂的产生,而不是通常观察到的生物表面活性剂,这归因于烃类的胞外降解。岩芯驱替试验表明,微生物强化可提高 20.5%的采油量,降低 59.8%的粘度,表明 HB-4 菌株在石油工业,特别是在强化稠油采收方面具有应用潜力。