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Hydrate Formation and Decomposition of CH4 and N-2 in Ordered Mesoporous Carbon CMK-3 in the Presence of Tetrahydrofuran

机译:四氢呋喃存在下有序介孔碳CMK-3中CH4和N-2的水合物形成和分解

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摘要

The use of hydrate formation in porous media is an effective method for gas storage and separation. The equilibrium isotherms of CH4 and N-2 in CMK-3, a mesoporous carbon material, were measured under different tetrahydrofuran (THF) concentrations and temperatures. The higher is the temperature required, the greater is the formation pressure needed, but the presence of THF significantly reduces the hydrate formation pressure. When THF exists, both CH4 and N-2 form structure II (sII) hydrate; however, the amount of hydrate generation is lower than the theoretical value. As the operating pressure increases, some of the sII CH4 hydrate may transform into structure I (sI) and the amount of hydrate generation increases. The desorption isotherms showed that the gas hydrate decomposed completely when the operating pressure was below the hydrate decomposition pressure. In addition, it is feasible to separate gas mixtures via hydrate formation using the different gas hydrate formation pressures.
机译:在多孔介质中使用水合物形成是气体储存和分离的有效方法。在不同的四氢呋喃(THF)浓度和温度下测量了介孔碳材料CMK-3中CH4和N-2的平衡等温线。所需的温度越高,所需的地层压力就越大,但是THF的存在会显着降低水合物的形成压力。当存在THF时,CH4和N-2均形成结构II(sII)水合物;但是,水合物的生成量低于理论值。随着工作压力的增加,某些sII CH4水合物可能转变为结构I(sI),并且水合物的生成量增加。解吸等温线表明,当操作压力低于水合物分解压力时,气体水合物完全分解。另外,使用不同的气体水合物形成压力通过水合物形成分离气体混合物是可行的。

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