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CH4-CO2 replacement occurring in sII natural gas hydrates for CH4 recovery and CO2 sequestration

机译:sII天然气水合物中发生CH4-CO2替代,用于CH4回收和CO2封存

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The CH4 center dot CO2 replacement occurring in sII natural gas hydrates for CH4 recovery and CO2 sequestration was investigated with a primary focus on thermodynamic, microscopic, and kinetic aspects. The guest-exchange behavior during replacement and the end-state composition analysis of replaced hydrates demonstrated that the extent of the replacement after CO2 injection into the sII CH4 + C3H8 hydrate was significantly enhanced with an increase in the injected CO2 pressure (P-CO2). The structure identification using powder X-ray diffraction (PXRD) suggested that the higher extent of replacement at higher P-CO2 was closely related with the higher portion of sI hydrate after replacement. C-13 NMR spectroscopy confirmed that most of the CH4 molecules resided in the small cages of the replaced sII hydrate while small amount of them also existed in the CO2-rich sI hydrate after replacement. The dissociation behavior and dissociation enthalpies of the replaced hydrates examined using an HP mu-DSC also verified the structural coexistence of sI and sII hydrates after replacement. The overall results can offer the first experimental evidence of the relationship between the replacement efficiency and the partial structure-transition in the CH4 + C3H8 - CO2 replacement, and can provide further insights into the cage-specific occupation of external gas molecules and thermal property changes for the actual replacement occurring in sII natural gas hydrates.
机译:研究了在sII天然气水合物中发生的CH4中心点CO2置换,用于CH4的回收和CO2的封存,主要研究了热力学,微观和动力学方面。置换过程中的客体交换行为和置换水合物的最终状态组成分析表明,将二氧化碳注入sII CH4 + C3H8水合物后,置换程度随注入二氧化碳压力(P-CO2)的增加而显着提高。 。使用粉末X射线衍射(PXRD)进行的结构鉴定表明,在较高的P-CO2下较高的置换程度与置换后sI水合物的较高含量密切相关。 C-13 NMR光谱证实,大多数CH4分子都位于被替换的sII水合物的小笼中,而替换后的CO2富集的sI水合物中也存在少量的CH4分子。使用HP mu-DSC检查的置换水合物的离解行为和离解焓也证明了置换后sI和sII水合物的结构共存。总体结果可为CH4 + C3H8-CO2置换中置换效率与部分结构转变之间的关系提供第一个实验证据,并可以进一步洞察笼中特定外部气体分子的占据和热性质变化用于sII天然气水合物的实际替代。

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