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国家自然科学基金(40873031)

作品数:4 被引量:28H指数:4
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煤系有机质生气行为对储层致密化的可能影响及定量化评价被引量:9
2013年
致密砂岩储层中蕴含的天然气资源潜力巨大,且在煤系地层中普遍分布,对储层致密化机制的认识关系到这类油气资源的有效勘探和开发.本文通过恢复煤系有机质在生物化学作用阶段和热成熟阶段的生气过程,发现煤系有机质在生气过程中产生了大量的CO2,其体积可达烃类气的50%~70%,远远超过现今煤系成因天然气藏中的CO2含量(0~5%).通过地质实例分析,发现缺失的气态CO2相当一部分以固态碳酸盐形式在储层孔隙中沉淀下来.据估算,理想条件下1m3准噶尔盆地侏罗系煤通过微生物和热力作用产生的CO2,若完全转化为碳酸盐胶结物,体积高达0.32m3,由此可见,该过程对煤系砂岩储层致密化起重要作用.由于煤生成烃类气和CO2的动力学过程具有不同步性,在弱成岩阶段和高过成熟阶段存在两期CO2规模产气期,与多期烃类气规模产气有所区别.研究指出,通过对具体地区致密储层天然气性质分析,可确定烃类气充注时间和CO2关键生成期匹配性,从而确定致密储层烃类充注和成藏机制,这对于确定致密储层充注机制与模式具有科学和实际意义.需要强调的是,储层致密化过程是有机-无机、水-岩-烃复杂相互作用的综合结果,本文仅指出该过程的重要性,CO2与地层水离子结合转化为自生矿物的时空关系尚待深化探讨.
帅燕华张水昌高阳卢鸿陈建平米敬奎刘金钟胡国艺
关键词:煤系致密储层成岩作用生烃动力学
Effect and quantitative evaluation of CO_2 derived from organic matter in coal on the formation of tight sandstone reservoirs被引量:7
2013年
Tight reservoirs are widely distributed, especially in coal measure strata. Identification of the densification mechanism of the tight sandstone reservoirs is critical in effectively exploring and exploiting tight gasoil resources. In this study, the gas for mation from type III organic matter in coal was kinetically modeled for the whole diagenetic stage, from the shallow buried biogas generation stage to the deep buried thermal gas generation stage. The results demonstrated that during hydrocarbon formation, quantities of nonhydrocarbon gases, such as CO2, were generated. The proportion of CO2 is about 50%70% of that of the C15, which far exceeds the CO2 content (05%) in the natural gas in the sedimentary basins. Geological case study analysis showed that a considerable part of the "lost" gaseous CO2 was converted into carbonate cement under favorable envi ronments. Under the ideal conditions, the volume of the carbonate cement transformed from total CO2 generated by 1 m3 coal (Junggar Basin Jurassic, TOC 67%) can amount to 0.32 m3. Obviously, this process plays a very important role in the for mation of tight sandstone reservoirs in the coal measures. Our results also show that the kinetic generation processes of Ci5 and CO2 are asynchronous. There are two main stages of CO2 generation, one at the weak diagenetic stage and the other at the overmature stage, which are different from largescale multistage hydrocarbon gas generation. Therefore, we can understand the mechanism of tight gas charging by determining the filling time for a tight gas reservoir and the key period of CO2 genera tion. Further analysis and correlation studies of a specific region are of great significance for determining the mechanism and modeling gas charging in tight reservoirs. It should be noted that the formation of tight sandstone reservoirs is the combined result of complex organicinorganic and waterrockhydrocarbon interactions. The details of spatial and temporal distributions of the carbonate cement derived from the or
SHUAI YanHuaZHANG ShuiChangGAO YangLU HongCHEN JianPingMI JingKuiLIU JinZhongHU GuoYi
关键词:DIAGENESISC02
Geochemical evidence for strong ongoing methanogenesis in Sanhu region of Qaidam Basin被引量:7
2010年
Sanhu depression of Qaidam Basin is the largest biogenic gas production region in China.Headspace samples were collected from two wells in this region,and hydrogen and propylene compounds were detected in these samples with a certain concentration.The stable hydrogen isotope ratio of H 2 is relatively light (-700‰--820‰).The stable carbon isotope ratio of propylene ranges from -27‰ to -40‰,which coincides with the rule of change of the stable carbon isotope of kerogen at the corresponding horizon.The characteristic analysis of sediments,structures,and Ar and He components in the region indicates that these microelement compounds are the product of degradation of organic substances by microorganisms,rather than from the mantle source,inorganic reaction or other sources.Detection of these components provides solid evidence for the strong ongoing methanogenesis in this region.
YanHua ShuaiShuiChang ZhangAiGuo SuHuiTong WangBaoYuan CaiHui Wang
关键词:BIOGENICPROPYLENEISOTOPE
油气藏埋存二氧化碳生物转化甲烷的机理和应用研究进展被引量:6
2011年
埋存CO2生物转化CH4技术是利用油、气藏中内源微生物,以埋存的CO2为底物,通过CO2生物还原途径合成CH4的生物技术。此技术因兼备CO2减排的环保意义、生物合成CH4的再生能源意义、延长油气藏寿命和潜在经济收益等优势有着广泛应用前景。CO2的捕集、埋存和油气藏生物多样性为此技术的实施提供了可行性。油藏中低矿化度的地层水中存在产H2和CH4的微生物,一定的成岩阶段生物气藏成因主要源于代谢CO2/H2的甲烷菌。因此,一定条件下油气藏内源微生物能够生物转化CO2。但是,油气藏埋存CO2生物转化CH4的实现受到各种条件的制约,包括:发酵菌群、产H2菌群和甲烷菌群之间的合作关系;甲烷菌群结构是否合理;甲烷菌和硫酸盐还原菌两大菌群之间的竞争和共代谢关系;以及CO2还原需要的H2来源等。相对于已知的代谢途径,油气藏中CO2还原途径可能更加复杂。因此,无论是微生物学家还是石油工程师,通过调控油气藏参数来实现生物合成CH4还是一个很大的挑战。目前,埋存CO2生物转化甲烷处于研究的实验室探索阶段,需要突破的瓶颈是寻找合适的油气藏、激活内源微生物实现CH4的再生,达到有经济意义的CH4转化速率和转化率。尽管埋藏CO2生物转化CH4是一个仅有10年研究历史的新技术,相信不久的将来,此项生物技术的广泛应用将会为人类可再生能源和CO2减排做出贡献。
魏小芳罗一菁刘可禹帅燕华
关键词:CO2减排CH4提高采收率
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