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Simulation of in situ oil reservoir conditions in a laboratory bioreactor testing for methanogenic conversion of crude oil and analysis of the updates microbial community

机译:实验室生物反应器中原位油藏条件的模拟,用于原油的甲状腺原油转化率和微生物群落的分析

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摘要

A bioreactor was designed and established to simulate in situ oil reservoir conditions for investigating methanogenic conversion of crude oil by microbial community derived from production water of a high-temperature oilfield. The continuous incubation and culturing were divided into two phases (Phase I, day 0-341; and Phase II, day 341-520) to allow sampling and supplement of fresh culture medium on day 341 and 520, respectively. The average methane production rate was 4.9 and 20.8 mmol CH4.day(-1) m(-3) pore volume during the Phase I and Phase II, respectively. Degradation intermediates of fatty acids were detected in the culture fluids indicating the transformation of crude oil. The 16S rRNA gene sequence analysis revealed that the major bacterial community shifted from Deferribacteres to Aminicenantes and unclassified Bacteria, as well as Thermotogae and Synergistetes. The predominant methanogenic community shifted from methylotrophic methanogen (Methanolobus) to hydrogenotrophic methanogens (Methanothermobacter and Methanocalculus) and acetoclastic methanogen (Methanothrbc) after 341 days of incubation, and was subsequently dominated by hydrogenotrophic methanogen (Methanothermobacter) after 520 days of incubation. This study expanded our understandings of methanogenic oil-degrading processes and the key microorganisms involved in laboratory simulation bioreactor over time of incubation. In addition, it further provides valuable insights on the microbial conversion of hydrocarbons to methane for enhancing the energy recovery from residual oil in petroleum reservoirs.
机译:设计并建立了一种生物反应器,以模拟原位油库,用于通过高温油田生产水的微生物群落研究原油的甲状腺原油转化。将连续孵育和培养分为两相(第I期,第0-341天;和第II天,第341-520天),以允许在第341和520天进行新鲜培养基的采样和补充。平均甲烷的生产率为4.9和20.8mmol CH4.Day(-1)m(-3)分别在I相和II期期间的孔体积。在表明原油转化的培养物中检测到脂肪酸的降解中间体。 16S rRNA基因序列分析显示,主要细菌群体从延长的细菌群体转移到Aminicenantes和未分类的细菌,以及Thermotogae和Synergistetes。在孵育341天后,从甲基嗜型甲醇原(甲蛋白酶)转移到甲基嗜型甲醇原(甲蛋白溶液)与乙酰致培养甲烷(甲烷热杆菌和甲蛋白)和乙多甲蛋白酶原(甲蛋白溶液),随后在孵育520天后通过氢脱氢甲烷酮(甲烷热杆菌)。本研究扩大了我们对甲烷化油脂降解过程的理解和在孵化时间随着时间的推移而参与实验室模拟生物反应器的关键微生物。此外,还提供了对烃微生物转化为甲烷的有价值的见解,以提高石油储层中残留油的能量回收。

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  • 作者单位

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    Second Oil Prod Factory Daqing Oilfield Co CNPC Daqing 163414 Heilongjiang Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

    Univ Hong Kong Sch Biol Sci Pokfulam Rd Hong Kong Peoples R China;

    East China Univ Sci &

    Technol State Key Lab Bioreactor Engn 130 Meilong Rd Shanghai 200237 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

    Bioreactor; Oil reservoir; Methanogenesis; Microbial community; Microbial enhanced energy recovery;

    机译:生物反应器;储油液;甲基酸盐;微生物群落;微生物增强能量回收;

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