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首页> 外文期刊>Fluid Phase Equilibria >Capillary effects on phase behavior of liquid and gaseous propane and dynamics of hydrate formation and dissociation in porous media
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Capillary effects on phase behavior of liquid and gaseous propane and dynamics of hydrate formation and dissociation in porous media

机译:多孔介质中水合物形成和水合物形成动态的毛细管作用及水合物形成和解离的动力学

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摘要

Using a precision adiabatic calorimetry method the phase behavior of liquid and gaseous propane with water in bulk as well as in dry and water saturated porous media have been studied in the temperature range from 240 to 350 K and the pressure range from 0.1 to 12 MPa. Quartz powder with a grain size from 25 to 38 mk as a porous medium was used. Water saturation of the porous medium was about 0.247 +/- 0.001 of porous volume. From thermodynamic point of view such water saturation of the porous volume is sufficient to consider the pore water phase practically as a bulk phase. A composite porous medium is formed from the quartz powder grains covered by a water film. In fact, the water film is a mechanical continuation of the quartz powder grains. The water film forms a configuration (a curvature) of the porous space as well predetermines a surface wettability of the composite porous medium. We study capillary effect in composite porous media due to capillary condensation and capillary evaporation of propane, both on a lyophilic surface and on a lyophobic surface of water film. Based on the experimental data of specific heat and temperature derivative of pressure at constant volume, the phase diagrams of propane in bulk and in water saturated and dry quartz powder have been constructed (including the gas hydrate field of phase diagram). (C) 2017 Elsevier B.V. All rights reserved.
机译:使用精密绝热量热法测定方法,在240至350k的温度范围内研究了散装和水饱和多孔介质中水的水和水饱和多孔介质的相行为,压力范围为0.1至12MPa。使用晶粒尺寸为25至38mK作为多孔介质的石英粉。多孔介质的水饱和度约为0.247 +/- 0.001多孔体积。从热力学的角度来看,多孔体积的这种水饱和足以实际考虑孔隙水相同作为体相。复合多孔介质由由水膜覆盖的石英粉颗粒形成。实际上,水膜是石英粉颗粒的机械延续。水膜形成多孔空间的构造(曲率),同样是预先确定复合多孔介质的表面润湿性。我们研究了复合多孔介质的毛细血管作用,由于丙烷的毛细血管缩合和毛细管蒸发,均在冻干表面和水膜的疏液表面上。基于恒定体积压力的特定热量和温度衍生的实验数据,构建了大量和水饱和和干石英粉的丙烷的相图(包括相图的气体水合物领域)。 (c)2017 Elsevier B.v.保留所有权利。

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