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Microbial induced mineral precipitations caused by nitrate treatment for souring control during microbial enhanced oil recovery (MEOR)

机译:微生物诱导的矿物沉淀因硝酸硝酸盐处理引起的微生物增强型油回收治疗(Meor)

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摘要

Microbiologically active environments, like oil reservoirs, can suffer a range of problems due to the presence of sulfate-reducing microorganisms. These include, but are not limited to: H2S formation, souring and corrosion. To prevent biogenic sulfate reduction, nitrate can be used as an environmentally friendly alternative to biocides. However, side effects of nitrate injection are sometimes observed but not well understood. In our study, we used original water from an onshore reservoir, where a microbial enhanced oil recovery (MEOR) application is planned, and investigated the effects of nitrate addition on H2S generation, mineral precipitation and microbiology. We observed that nitrate did inhibit H2S formation in most, but not all cases. During nitrate reduction, iron and calcite minerals precipitated over short- and long-term (10 or 160 days) incubations. This was caused by a nitrate-reducing group of bacteria belonging to the family Deferribacteraceae. Using dynamic sandpack setups and numerical modeling approaches with the simulator TOUGHREACT, we observed significant reduction in permeabilities (similar to 44x) suggesting injectivity issues over time in case nitrate is continuously added to the reservoir. Our study shows that nitrate-dependent processes, which were described separately for pure-cultures before, are also valid for natural mixed communities present in oil fields and underlines the complex interplay of microbial metabolisms associated with those communities.
机译:由于硫酸盐还原微生物存在,微生物学上活性环境可以遭受一系列问题。这些包括但不限于:H2S形成,腐蚀和腐蚀。为了防止生物硫酸盐还原,硝酸盐可用作对生物剂的环保替代品。然而,有时观察硝酸盐注射的副作用但不太了解。在我们的研究中,我们从陆上水库使用原始水,其中计划微生物增强的储存(MEOR)申请,并研究了硝酸盐添加对H2S生成,矿物沉淀和微生物学的影响。我们观察到,硝酸盐在大多数情况下抑制了H2S的形成,但并非所有情况。在硝酸盐还原过程中,钢铁和方解石矿物质沉淀出短期和长期(10或160天)孵育。这是由属于家族延期的细菌的硝酸盐还原群引起的。使用动态Sandpack设置和数值模拟方法与模拟器努力反应,我们观察到渗透率的显着降低(类似于44X),表明硝酸盐连续添加到储层时随着时间的推移问题。我们的研究表明,以前对纯培养物单独描述的硝酸盐依赖性方法也对油田中存在的自然混合群体有效,并强调与这些社区相关的微生物代谢的复杂相互作用。

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