化工学报 ›› 2008, Vol. 59 ›› Issue (3): 694-700.

• 能源和环境工程 • 上一篇    下一篇

一株高温解烃产黏菌的特性及其调剖驱油效果

王君;马挺;李蔚;刘静;梁凤来;刘如林   

  1. 分子微生物与技术教育部重点实验室,天津市微生物功能基因组学重点实验室,南开大学生命科学学院;中国石油大庆油田分公司勘探开发研究院
  • 出版日期:2008-03-05 发布日期:2008-03-05

Characterization of a mucoidal thermophile hydrocarbon-degrading bacterium and experiments on profile flooding

WANG Jun;MA Ting;LI Wei;LIU Jing;LIANG Fenglai;LIU Rulin   

  • Online:2008-03-05 Published:2008-03-05

摘要:

从油田地层水中分离出一株能在高温下降解烷烃并产胞外多糖的细菌 DM-1,初步鉴定为芽孢杆菌(Bacillus sp.)。该菌能在55℃高温缺氧条件下乳化并降解原油。在以原油为碳源的培养基中55℃培养5 d,经红外分光测油仪测定,对原油的降解率达到61.51%。 在高温和特定营养条件下,菌株DM-1可产生胞外多糖,经高压液相色谱分析,其组成糖为甘露糖(91.87%)、葡萄糖(7.95%)和半乳糖(0.18%)。对该菌产多糖的最适碳源和温度进行了优化,多糖产量可达1.7 g·L-1。同时进行了岩心调剖和驱油物理模拟实验,结果表明,利用该菌株产生的胞外多糖能够将岩心注入压力由0.01 MPa增加到0.40 MPa,渗透率从3.856 μm2降至 1.589 μm2,在驱油模拟实验中岩心后续水驱采收率为3.9%。利用环境扫描电镜观察了模拟岩心中该菌株的封堵效果。菌株DM-1在微生物采油中具有很好的应用前景。

关键词: 高温, 解烃菌, 胞外多糖, 微生物采油, 物理模拟驱油

Abstract:

Strain DM-1 which was identified as Bacillus sp.was characterized to degrade crude oil and produce extra cellular polysaccharide at a high temperature.At the temperature of 55℃, strain DM-1 could emulsify and degrade crude oil anaerobically.This strain could unitize crude oil as the sole carbon source and the degradation rate was 61.51%.It also produced extra cellular polysaccharide (EPS) in special medium at a high temperature.High performance liquid chromatography (HPLC) analysis of the EPS revealed that it mainly consisted of mannose (91.87%), glucose (7.95%) and galactose (0.18%).Carbon source and temperature were optimized and EPS yield could reach 1.7 g·L-1.Manual cores were used to simulate the actual environment in petroleum reservoirs and the results showed that strain DM-1 could increase the pressure in the core from 0.01 MPa to 0.40 MPa and permeability was reduced from 3.856 μm2 to 1.589 μm2.Oil recovery was increased by 3.9%.Environmental scanning electron microscopy (ESEM) technology was used to observe the microcosmic conditions in the cores.Strain DM-1 can be used in microbial enhanced oil recovery(MEOR).

Key words: 高温, 解烃菌, 胞外多糖, 微生物采油, 物理模拟驱油