Study on the interaction between endogenous silicate-decomposing mixed bacteria and montmorillonite in high-temperature sour oil reservoirs
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P578.967;P579

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    Abstract:

    In this study, to address the reservoir injury problem triggered by montmorillonite hydration and expansion in high-temperature sour reservoirs (60℃, pH=6.5) in Shengli Oilfield, high-temperature-resistant silicate mixing bacterium was isolated from in-situ formation water and named as SSB-Mnt, to investigate the coupling mechanism of the modification of the mineral structure of montmorillonite. Through multi-scale characterization by X-ray diffraction analysis (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy-energy spectroscopy (SEM-EDS) and inductively coupled plasma-optical emission spectrometer (ICP-OES) combined with dynamic analysis of the elemental content of the system, it was found that SSB-Mnt synergized with electron transfer through the metabolic production of acid (pH value reduction from 6.6 to 5.5), the reduction of 43.8%~49.7% structural Fe3+ in montmorillonite was achieved within 30 days (average Fe2+ concentration 0.402 mmol/L). Mineralogical evidence suggests that microbial action resulted in montmorillonite interlayer collapse with a reduction in layer spacing from 1.49 to 1.22 nm, depolymerization of the silica-oxygen skeleton (reduction in the intensity of the Si—O—Si absorption peaks), and the formation of secondary minerals associated with elements Fe, Ca, Ti, and P. In this study, we explored the model of synergistic modification of high-temperature-resistant bacteria and minerals under reservoir conditions, and formulated the formulated medium, which provided a theoretical basis for the microbial anti-expansion technology in unconventional oil and gas reservoirs.

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陈风吟,胡婧,王帅栋,束青林,姬翔,周川野,王长秋,丁竑瑞,鲁安怀,2026,高温酸性油藏内源硅酸盐分解混菌与蒙脱石交互作用研究[J].岩石矿物学杂志,45(1):137~146. CHEN Feng-yin, HU Jing, WANG Shuai-dong, SHU Qing-lin, JI Xiang, ZHOU Chuan-ye, WANG Chang-qiu, DING Hong-rui, LU An-huai,2026,Study on the interaction between endogenous silicate-decomposing mixed bacteria and montmorillonite in high-temperature sour oil reservoirs[J]. Acta Petrologica et Mineralogica,45(1):137~146.

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History
  • Received:December 25,2024
  • Revised:November 21,2025
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  • Online: January 19,2026
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