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A microbiological study of an underground gas storage in the process of gas extraction

机译:抽气过程中地下储气库的微生物学研究

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The numbers of microorganisms belonging to ecologically significant groups and the rates of terminal microbial processes of sulfate reduction and methanogenesis were determined in the liquid phase of an underground gas storage (UGS) in the period of gas extraction. The total number of microorganisms in water samples from the operation and injection wells reached 2.1 x 10(6) cells/ml. Aerobic organotrophs (including hydrocarbon-and oil-oxidizing ones) and various anaerobic microorganisms (fermenting bacteria, methanogens, acetogens, sulfate-, nitrate-, and iron-reducing bacteria) were constituent parts of the community. The radioisotopic method showed that, in all the UGS units, the terminal stages of organic matter decomposition included sulfate reduction and methanogenesis, with the maximal rate of these processes recorded in the aqueous phase of above-ground technological equipment which the gas enters from the operation wells. A comparative analysis by these parameters of different anaerobic ecotopes, including natural hydrocarbon fields, allows us to assess the rate of these processes in the UGS as high throughout the annual cycle of its operation. The data obtained indicate the existence in the UGS of a bacterial community that is unique in its diversity and metabolic capacities and able to make a certain contribution to the geochemistry of organic and inorganic compounds in the natural and technogenic ecosystem of the UGS and thus influence the industrial gas composition.
机译:在抽气期间,在地下储气库(UGS)的液相中确定了具有生态意义的群体的微生物数量以及硫酸盐还原和甲烷生成的最终微生物过程的速率。来自操作井和注入井的水样中的微生物总数达到2.1 x 10(6)个细胞/ ml。好氧有机营养菌(包括碳氢化合物和油氧化菌)和各种厌氧微生物(发酵细菌,产甲烷菌,产乙酸菌,硫酸盐,硝酸盐和铁还原菌)是社区的组成部分。放射性同位素方法显示,在所有UGS装置中,有机物分解的最终阶段包括硫酸盐还原和甲烷生成,这些过程的最大速率记录在气体从运行中进入的地上技术设备的水相中。井。通过对不同厌氧生态区(包括天然烃田)的这些参数进行的比较分析,使我们能够评估UGS在其整个运营周期中这些过程的发生率。所获得的数据表明,UGS中存在着一个细菌群落,该群落具有独特的多样性和代谢能力,并且能够对UGS天然和技术生态系统中有机和无机化合物的地球化学做出一定贡献,从而影响到工业气体成分。

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