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Potential impact of CO2 on subsurface microbial ecosystems and implications for the performance of storage reservoirs

机译:二氧化碳对地下微生物生态系统的潜在影响及其对储存水库性能的影响

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Studies of the potential environmental consequences of carbon capture and storage (CCS) have, to date, focused on the physical and chemical impacts of CO2 within stable geological formations together with associated monitoring systems to assure that no significant leakage occurs. If leakage did occur after formal closure of the injection site, this is likely to be restricted to discrete point sources, such as abandoned wells, resulting in locally high concentrations of CO2 in near-surface ecosystems. Consequently, environmental impacts of localised elevated CO2 on terrestrial and marine ecosystems are areas of active research. However, the CO2 storage site could also impact on the deep subsurface microbial ecosystem and biogeochemical processes. This paper describes short pilot studies (2136 h/ 89 days) investigating the changes in physical transport properties that are mediated by microbial activity, within samples of sandstone under experimental conditions simulating deep aquifer and reservoir environments in the North Sea. They showed, for the first time, that P. aeruginosa and indigenous microbial populations can survive exposure to saline fluids saturated with CO2. However, little impact on fluid transport under these conditions in these short experiments was observed. It is possible that the microbes require a period of acclimatisation to the extreme environmental conditions generated by the presence of CO2 before any impacts can be detected. Thus, long-term experiments are needed to clarify the role of microbes on rock transport properties.
机译:迄今为止,碳捕获和储存(CCS)的潜在环境后果的研究具有与相关的监测系统在稳定的地质形成中的物理和化学冲击,以确保不会发生显着的泄漏。如果在注射部位正式关闭后发生泄漏,则可能仅限于离散点来源,例如废弃的井,导致近表面生态系统中局部高浓度的二氧化碳。因此,局部化升高的二氧化碳对陆地和海洋生态系统的环境影响是积极研究的领域。然而,二氧化碳储存网站也可以影响深度地下微生物生态系统和生物地球化学过程。本文介绍了在田岩中的实验条件下,研究了微生物活性介导的微生物活性的物理运输性能变化的短暂试验研究(2136 H / 89天),模拟北海深含水层和水库环境的实验条件。他们首次表现出p.铜绿假单胞菌和本土的微生物种群可以存活地暴露于饱和CO 2的盐水。然而,观察到在这些短实验中对这些条件下的流体运输的影响很小。微生物可能需要在通过在检测到任何撞击之前对通过CO 2产生产生的极端环境条件的时期。因此,需要长期的实验来阐明微生物在岩石运输性质上的作用。

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