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Characteristics of dissolved inorganic carbon in produced water from coalbed methane wells and its geological significance

         

摘要

Based on long-term dynamic tracing of dissolved inorganic carbon(DIC)and stable carbon isotope(δ13CDIC)in produced water from 20 coalbed methane(CBM)wells in western Guizhou,the spatial-temporal dynamic variations ofδ13CDIC of the GP well group produced in multi-layer commingled manner were analyzed,and the relationship between the value ofδ13CDIC and CBM productivity was examined.The produced water samples of typical wells in the GP well group were amplified and sequenced using 16S rDNA,and a geological response model ofδ13CDIC in produced water from CBM wells with multi-coal seams was put forward.The research shows that:δ13CDIC in produced water from medium-rank coal seams commonly show positive anomalies,the produced water contains more than 15 species of methanogens,and Methanobacterium is the dominant genus.The dominant methanogens sequence numbers in the produced water are positively correlated withδ13CDIC,and the positive anomaly of v is caused by reduction of methanogens,and especially hydrogenotrophic methanogens.Vertical segmentation of sedimentary facies and lithology in stratum with multi-coal seams will result in permeability and water cut segmentation,which will lead to the segmentation ofδ13CDIC and archaea community in produced water,so in the strata with better permeability and high water cut,theδ13CDIC of the produced water is abnormally enriched,and the dominant archaea is mainly Methanobacterium.In the strata with weak permeability and low water cut,theδ13CDIC of the produced water is small,and the microbial action is weak.The shallow layer close to the coal seam outcrop is likely to be affected by meteoric precipitation,so theδ13CDIC of the produced water is smaller.The geological response model ofδ13CDIC in produced water from multi-coal seams CBM wells in the medium-rank coal reveals the geological mechanism and microbial action mechanism of theδ13CDIC difference in the produced water from the multi-coal seams CBM wells.It also provides effective geochemical evidence for the superimposed fluid system controlled by sedimentary facies,and can also be used for the contribution analysis of the produced gas and water by the multi-layer CBM wells.

著录项

  • 来源
    《石油勘探与开发:英文版》 |2020年第5期|P.1074-1083|共10页
  • 作者单位

    Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process Ministry of Education China University of Mining and Technology Xuzhou 221008 ChinaSchool of Resource and Geosciences China University of Mining and Technology Xuzhou 221116 China;

    Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process Ministry of Education China University of Mining and Technology Xuzhou 221008 ChinaSchool of Resource and Geosciences China University of Mining and Technology Xuzhou 221116 China;

    Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process Ministry of Education China University of Mining and Technology Xuzhou 221008 ChinaSchool of Resource and Geosciences China University of Mining and Technology Xuzhou 221116 China;

    Guizhou Research Center of Shale Gas and CBM Engineering Technology Guiyang 550009 China;

    Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process Ministry of Education China University of Mining and Technology Xuzhou 221008 ChinaSchool of Resource and Geosciences China University of Mining and Technology Xuzhou 221116 China;

    Key Laboratory of Coalbed Methane Resources and Reservoir Formation Process Ministry of Education China University of Mining and Technology Xuzhou 221008 ChinaSchool of Resource and Geosciences China University of Mining and Technology Xuzhou 221116 China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 气田开发与开采;
  • 关键词

    coalbed methane; produced water from coal seam; dissolved inorganic carbon; stable carbon isotope; archaea community; microbial gene; CBM productivity; geological response model;

    机译:煤层甲烷;生产的煤层水;溶解无机碳;稳定的碳同位素;古群落;微生物基因;CBM生产力;地质反应模型;
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