Cultivation and biogeochemical analyses reveal insights into biomineralization caused by piezotolerant iron-reducing bacteria from petroleum reservoirs and their application in MEOR

静水压力 生物矿化 化学 石油 环境化学 溶解 铁细菌 生物地球化学循环 共生 细菌 地质学 地球化学 古生物学 物理 有机化学 物理化学 热力学 变质岩
作者
Hao Dong,Yu Li,Ting Xu,Yulong Liu,Jian Ning Fu,Yanlong He,Ji Gao,Jiaqi Wang,Shanshan Sun,Yuehui She,Fan Zhang
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:903: 166465-166465 被引量:1
标识
DOI:10.1016/j.scitotenv.2023.166465
摘要

Interactions between minerals and iron-reducing bacteria under in-situ pressure and temperature conditions play important roles in oil extraction, residual oil methanation, and CO2 storage in petroleum reservoirs. However, the impacts of pressure on dissimilatory iron-reducing bacteria (DIRB) are poorly understood. Herein, the interactions between clay minerals and microbes under elevated hydrostatic pressure conditions were elucidated through enrichment experiments. Bioreduction experiments were performed under hydrostatic pressures of 0.1-40 MPa. Microbial diversity analysis revealed that high pressures significantly increased microbial diversity in petroleum reservoirs, which is helpful for restoring underground ecosystems in situ. The key piezotolerant iron-reducing bacteria in the samples were Shewanella and Flaviflexus. These two genera were isolated for the first time from petroleum reservoirs and identified as piezophiles. The SEM results clearly showed mineral surface dissolution. Moreover, nanoscale secondary minerals were produced during biomineralization. XRD analysis revealed that illite, albite, and clinoptilolite were present after bioreduction. The isolates showed the capacity to inhibit hydro-swelling and prevent plugging-related damage in reservoirs.
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