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煤层气井产出水溶解无机碳特征及其地质意义 被引量:5
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作者 杨兆彪 秦勇 +3 位作者 秦宗浩 易同生 李存磊 张争光 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2020年第5期1000-1008,共9页
对贵州西部20口煤层气井产出水溶解无机碳(DIC)稳定碳同位素(δ13CDIC)进行了长期动态跟踪,重点分析了多层合采煤层气GP井组δ13CDIC的时空动态,探讨了δ13CDIC值与煤层气产能的关系;选取典型井产出水进行了微生物16S rDNA扩增测序分析... 对贵州西部20口煤层气井产出水溶解无机碳(DIC)稳定碳同位素(δ13CDIC)进行了长期动态跟踪,重点分析了多层合采煤层气GP井组δ13CDIC的时空动态,探讨了δ13CDIC值与煤层气产能的关系;选取典型井产出水进行了微生物16S rDNA扩增测序分析,提出了煤层气多层合采产出水δ13CDIC地质响应模式。研究表明:中煤阶煤层气井产出水δ13CDIC正异常普遍,产出水中包含15种以上的甲烷菌属,Methanobacterium为优势属;产出水中优势甲烷菌属序列数目与δ13CDIC值显著正相关,δ13CDIC值正异常由产甲烷菌还原作用造成,且主要为氢营养型甲烷菌还原作用;多煤层煤系沉积相及岩性的分段性会造成渗透性和富水性的分段性,从而控制产出水δ13CDIC值和古菌群落的分段性,渗透性和富水性较好的层段,产出水δ13CDIC值正异常显著,古菌属主要为Methanobacterium;渗透性和富水性较弱的层段,产出水δ13CDIC值较小,微生物作用较弱;接近煤层露头的较浅部位,容易受到大气降水的补给,产出水δ13CDIC值较小;中煤阶多煤层煤层气井产出水δ13CDIC地质响应模式揭示了多层合采煤层气井产出水中δ13CDIC差异的地质机理和微生物作用机理,为沉积相控制的叠置流体系统提供了有效的地球化学证据,也可用于多层合采煤层气井产层气、水贡献分析。 展开更多
关键词 煤层气 煤层产出水 溶解无机碳 稳定碳同位素 古菌群落 微生物基因 煤层气产能 地质响应模式
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贵州西部地区煤层气井产出气地球化学特征 被引量:9
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作者 秦宗浩 杨兆彪 +5 位作者 秦勇 金军 吴丛丛 邢蓝田 李庚 李洋阳 《煤炭学报》 EI CAS CSCD 北大核心 2020年第2期712-720,共9页
基于贵州西部17口煤层气井不同排采时间的产出气,通过对气体组分、甲烷碳氢同位素测试以及产能数据的收集,结合研究区水动力条件以及地质特征,研究了该区域煤层气地球化学特征、地质控制因素及与煤层气产能的关系。结果显示:研究区煤层... 基于贵州西部17口煤层气井不同排采时间的产出气,通过对气体组分、甲烷碳氢同位素测试以及产能数据的收集,结合研究区水动力条件以及地质特征,研究了该区域煤层气地球化学特征、地质控制因素及与煤层气产能的关系。结果显示:研究区煤层气组分以甲烷为主,属于干气~特别干的气体,甲烷组分体积分数介于91.504%~99.508%,其次为N2和CO2,不同地方煤层气井重烃含量变化大。甲烷稳定碳同位素δ13C1值介于-44.1‰^-27.8‰,δD值介于-196.5‰^-120.8‰,属于热成因气,松河GP井组和大河边Z-1井接近于原生煤层气的特征,研究区东北部织金ZJ井组及其余各井明显受到运移-扩散次生作用的影响。贵州西部煤层气井产出气的甲烷碳氢同位素值呈现东北高西南低的分布趋势,煤变质程度对产出气的地球化学特征具有主要的控制作用,其中甲烷氢同位素值的分布亦受到沉积环境的变化控制。在同一煤层气井组内部,甲烷的碳氢同位素值大小受井组内水动力条件的变化以及开发煤层埋深的影响较大。甲烷碳氢同位素值与日产气量呈现负相关关系,其本质在于甲烷的碳氢同位素受控于埋深及埋深主导的水动力条件的变化,而埋深的差异性很好的控制了产气能力。煤层气井产出气随着排采时间的变化,煤层气气体组分和甲烷碳氢同位素值呈现一定规律的变化,其中碳氢同位素值随着排采时间变化总体有波动性增大变重趋势,这与组分分馏和同位素分馏有关。 展开更多
关键词 贵州西部 煤层气 气体组分 甲烷碳氢同位素 成因 分馏
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Characteristics of dissolved inorganic carbon in produced water from coalbed methane wells and its geological significance
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作者 YANG Zhaobiao qin Yong +3 位作者 qin zonghao YI Tongsheng LI Cunlei ZHANG Zhengguang 《Petroleum Exploration and Development》 2020年第5期1074-1083,共10页
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 of... 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. 展开更多
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
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