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Economics of CO_2 sequestration in coalbed methane reservoirs

机译:煤层气储层中CO_2封存的经济学

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Enhanced Coalbed Methane Recovery (ECBM) is presently not commercial due to the high cost of compression and capture of the injection gas either carbon dioxide (CO_2) or nitrogen (N_2). Recently, the necessity to reduce greenhouse gas emissions has provided a dual role for coalbeds - as a source of natural gas and as a repository for CO_2. The second role arises because of the storage mechanism for gas in coal. Unlike CO_2-enhanced oil recovery processes. CO_2 injected during ECBM recovery is strongly adsorbed onto the coal, and in a relatively homogeneous reservoir is not expected to break through to the production wells until the bulk of the coalbed methane (CBM) reservoir is swept of methane. This provides a huge CO_2 storate potential in coalbeds throughout the world. However, based on current economic factors, it makes more sense to partially deplete the coal resevoir of methane beofre injecting CO_2. The exact strategy depends on two economic factors, the costs and credits for sequestration of CO_2 and the natural gas sales price. Co_2 credits would have a major effect on the production strategy used for CBM, and would favor early use of ECBM. An examle is used later in this paper to illustrate this point that takes into account the differences between "gross CO_2" sequestered (CO_2 captured), and "CO_2 avoided" (net CO_2 sequestered).
机译:增强的煤层溶液恢复(ECBM)目前不是由于压缩成本和捕获二氧化碳(CO_2)或氮气(N_2)的高成本而导致的商业。最近,减少温室气体排放的必要性为煤层提供了双重作用 - 作为天然气的源泉,作为CO_2的存储库。由于煤中的气体储存机制,产生了第二个作用。与CO_2增强的石油恢复过程不同。在ECBM恢复期间注射的CO_2强烈地吸附在煤上,并且在相对均匀的储层中,预计不会突破生产井,直至煤层溶液(CBM)储存器扫过甲烷。这提供了全球煤层中的巨大CO_2潜力。然而,基于当前的经济因素,部分耗尽甲烷沥青注射CO_2的煤再蒸汽更具意义。确切的策略取决于两种经济因素,CO_2封存的成本和学分和天然气销售价格。 CO_2学分将对用于CBM的生产策略产生重大影响,并希望早期使用ECBM。在本文稍后使用考试以说明这一点考虑了“总CO_2”隔离(CO_2捕获)之间的差异,并“避免了CO_2”(净CO_2隔离)。

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