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Evaluation of The Potential of Microbial Restoration of Natural Gas Deposit with CO2 Sequestration by Investigating Indigenous Bacteria in a High CO2 Content Oilfield

机译:通过研究高CO2含量油田的土着细菌来评价CO2封存的天然气沉积物的微生物沉积潜力

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We are focusing on in-situ microbial conversion of CO2 that was injected into depleted oil reservoirs for CCS into CH4 by oil-degrading and H2-producing bacteria and hydrogenotrophic methanogens. Those bacteria are concerned to be affected under high CO2 condition, which causes pH reduction of the brine; therefore, we estimated the possibility of this microbial conver-sion process under high partial pressure of CO2 in this study by investigating the following: 1. The habitations of above bacteria in a high/low CO2 content reservoir 2. The pH reduction of brine under high partial pressure of CO2 3. Productivities of H2 and CH4 by indigenous bacteria of the high CO2 content reservoirs Thermotoga sp. and Thermoanaerobacter sp. whose productivities of hydrogen from crude oil had been shown by Fujiwa-ra et al.1) were detected as a dominant in the high CO2 content reservoir. Moreover, Methanobacterium sp. and Methanother-mobacter sp. that are well known as hydrogenotrophic methanogens were also detected from the reservoir. These results indi-cate that the effective microorganisms for this microbial conversion process can inhabit reservoirs that stored with CO2 for CCS dominantly. The pH of the brine including bicarbonate more than 0.1 mol/L can be maintained at 7.0 to 8.0, which was suitable pH for many kinds of microorganisms, even under high CO2 partial pressure such as 5.0 MPa, suggesting that this microbial conver-sion process can be applied easily on reservoirs whose brine is abundant in bicarbonate. Enrichment culture experiments of the brine were carried out under high CO2 partial pressure (3.0 MPa) at 75oC. Both H2 and CH4 production were found in not only the brine having the pH buffering action but also the brine whose pH was reduced significantly under high CO2 partial pressure; therefore, the microbial conversion process may be also expected in normal re-servoirs that have poor acid neutralizing capacity.
机译:我们专注于原位微生物转化的二氧化碳转化为CCS的耗尽的储油液,通过油脂降解和产量产生的细菌和氢脱氢型甲烷。这些细菌涉及在高二氧化碳条件下受影响,这导致盐水的pH;因此,我们估计该研究在CO 2的高分压力下进行了这种微生物转换过程的可能性,通过研究了以下内容:1。高/低二氧化碳含量储存器中的细菌的居住。盐水下的pH减少CO 2的高分压力3.通过高CO2含量储存器Thermotoga Sp的本土细菌的H2和CH4的产物。和ThermoanaErobacter sp。富士武醛含量从原油的氢的产品可见)被检测为高CO 2含量储层中的显性。此外,甲基杆菌SP。和methanothot-mobacter sp。也从储存器中检测到众所周知的被称为氢脱氢甲烷酮。这些结果Indi-Cate认为这种微生物转化过程的有效微生物可以居住在储存中,储存与CCS的二氧化碳显着。包括碳酸氢盐的盐水的pH可以保持在7.0至8.0的7.0至8.0,即使在高CO 2部分压力如5.0MPa的高CO 2部分压力下,也可以保持适合于多种微生物的pH值,这表明这种微生物转换过程可以在盐水碳酸氢盐丰富的水库上轻松应用。盐水的富集培养实验在75oC的高CO 2分压(3.0MPa)下进行。 H2和CH 4生产不仅是具有pH缓冲作用的盐水,还发现了在高CO 2分压下PH显着降低的盐水;因此,在具有差的酸中和能力的正常重新伺服物中也可以预期微生物转化方法。

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