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Geomicrobiological properties of Tertiary sedimentary rocks from the deep terrestrial subsurface

机译:陆地深部第三纪沉积岩的地球微生物学特性

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Microbial metabolic activity within the deep subsurface can potentially impact radionuclide migration during geological disposal of nuclear waste. To evaluate the geomicrobiological properties of Tertiary sedimentary rocks, which are widely distributed in the repository environment in Japan, aseptic and deoxygenated drilling was conducted with the installation of a multi-packer system to collect cores and groundwater. Integrated results from measurements on potential rates of denitrification and pore-size distributions in drill core samples indicated that in situ microbial activity is constrained by the availability of pore spaces larger than 0.1 μm in radius. Comparison of geochemical profiles of porewater extracted from the core samples and groundwater collected within multi-packer intervals revealed that terminal electron acceptors such as nitrite and sulfate were depleted in groundwater. Microbial community structures based on 16S rRNA gene sequences were represented by phylotypes related to Fe-, Mn-, elemental sulfur- and sulfate-reducing bacteria in groundwater. In addition, a phylotype closely related to denitrifying Acidovorax sp. of the β-proteobacteria was dominant in the lower borehole interval. From our results, it is likely that groundwater microorganisms mediate redox reactions that influence the mobility of radionuclides in the deep subsurface.
机译:深部地下的微生物代谢活动可能会在核废料的地质处置过程中影响放射性核素的迁移。为了评估在日本储层环境中广泛分布的第三纪沉积岩的地球微生物学特性,通过安装多层填料系统收集岩心和地下水进行了无菌和脱氧钻井。对钻芯样品中反硝化作用的潜在速率和孔径分布的测量的综合结果表明,原位微生物活性受到半径大于0.1μm的孔隙空间的限制。从岩心样品中提取的孔隙水和在多个封隔器内收集的地下水的地球化学特征的比较表明,地下水中的末端电子受体(如亚硝酸盐和硫酸盐)被耗尽。基于16S rRNA基因序列的微生物群落结构以与地下水中Fe,Mn,元素硫和硫酸盐还原细菌有关的系统型表示。此外,系统型与反硝化嗜酸杆菌属菌种紧密相关。在较低的井眼间隔中,β-蛋白细菌的数量占主导。根据我们的结果,地下水微生物可能介导氧化还原反应,从而影响深地下地下放射性核素的迁移率。

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