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首页> 外文期刊>Chemical engineering journal >Replacement in CH4-CO2 hydrate below freezing point based on abnormal self-preservation differences of CH4 hydrate
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Replacement in CH4-CO2 hydrate below freezing point based on abnormal self-preservation differences of CH4 hydrate

机译:基于CH4水合物异常自我保存差异的冰点低于冰点的CH4-CO2水合物替代品

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摘要

CH4-CO2 replacement for natural gas hydrate exploitation is a win-win method to simultaneously realize CH4 recovery and CO2 sequestration. However, the exchange progress is severely blocked by the reformation of compact CO2 hydrate film. Constructing porous CO2 hydrate could be a promising approach to solve this annoyance. In consideration of the difference in ice layer defects and decomposition rate of CH4 hydrates at different temperatures in its anomalous self-preservation region, in this study, we proposed a concept of CH4-CO2 hydrate replacement by utilizing the multi-defective ice generated from dissociated CH4 hydrate to form porous CO2 hydrate. The CH4-CO2 hydrate exchange experiments occurred at 268.15 K and 272.15 K with rapid CH4 exhaust-CO2 injection were conducted. The results showed that the replacement efficiency at 272.15 K was much higher than at 268.15 K. In addition, we examined the replacement at 274.15 K and replacement with slow gas sweep at 268.15 K for comparison. These experimental results confirmed the possibility of the replacement concept.
机译:天然气水合物开采中的CH4-CO2置换是同时实现CH4回收和CO2封存的双赢方法。然而,紧凑的二氧化碳水合物膜的改造严重阻碍了交换过程。构建多孔二氧化碳水合物可能是解决这一问题的一种很有前途的方法。考虑到冰层缺陷和CH4水合物在其异常自保区不同温度下的分解速率的差异,本研究提出了利用分解CH4水合物生成的多缺陷冰形成多孔CO2水合物的CH4-CO2水合物置换概念。在268.15K和272.15K温度下进行了CH4-CO2水合物交换实验,并快速注入CH4废气-CO2。结果表明,272.15K下的置换效率远高于268.15K下的置换效率。此外,我们还检查了274.15K下的置换和268.15K下的缓慢气扫置换,以进行比较。这些实验结果证实了替换概念的可能性。

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