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Insights into CO2 Capture by Flue Gas Hydrate Formation: Gas Composition Evolution in Systems Containing Gas Hydrates and Gas Mixtures at Stable Pressures

机译:通过烟道气水合物形成探讨CO2捕获:气体成分在含有气水合物和气体混合物的气体混合物中的气体组成演化

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摘要

Capturing CO2 from power plant flue gas through hydrate formation is starting to be applied on an industrial scale. Several methods have been developed, and a large number of experiments have been conducted in order to investigate ways of increasing their efficiency. However, most of them suffer from a lack of detailed kinetic studies. In this Letter, we present a highly accurate method to investigate the kinetics of flue gas hydrate formation. Preliminary results are detailed at three different temperatures. It has been found that more than 40% of CO2 capture in the form of hydrates occurs after reaching the final pressure. Therefore, statistically constant pressure cannot be used as a sign of thermodynamic equilibrium. The results obtained from this study are important for optimizing CO2 separation operations thus maximizing efficiency and reducing economic barriers. In addition, they are also useful in studying the kinetics of hydrate formation in other gas mixture systems.
机译:通过水合物形成从发电厂烟道气中捕获二氧化碳,开始应用于工业规模。 已经开发了几种方法,并进行了大量的实验,以调查增加其效率的方法。 然而,大多数人都缺乏缺乏详细的动力学研究。 在这封信中,我们提出了一种高度准确的方法来研究烟气水合物形成的动力学。 初步结果在三种不同的温度下详述。 已经发现,在到达最终压力后,在水合物的形式中捕获超过40%的CO 2捕获。 因此,统计上恒定的压力不能用作热力学平衡的标志。 从该研究获得的结果对于优化二氧化碳分离作用,因此对于优化二氧化碳分离操作是重要的,从而最大限度地提高效率和降低经济障碍。 此外,它们还可用于研究其他气体混合物系统中水合物形成的动力学。

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