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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Equilibrated Interfacial Tension Data of the CO2-Water System at High Pressures and Moderate Temperatures
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Equilibrated Interfacial Tension Data of the CO2-Water System at High Pressures and Moderate Temperatures

机译:高压和中等温度下CO2-水系统的平衡界面张力数据

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This work presents interfacial tension (IFT) data for the CO2-water system in the pressure and temperature range of (1.48 to 20.76) MPa and (298.15 to 333.15) K. The IFT evaluation is carried out using the pendant drop method. Inaccuracies observed in the literature such as consideration of pure phase densities and short presaturation time durations have been avoided by utilizing saturated phase densities and long presaturation time durations. The water-rich phase density is evaluated using a literature correlation, and the CO2-rich phase density is evaluated using equation-of-state modeling approach. Also, presaturation times were extended up to 24 h to obtain equilibrated IFT data for the CO2-water system. It is observed that the IFT reduces with pressure when the CO2-rich phase is a gas at both subcritical and supercritical temperatures. Further, the IFT values reached a plateau at about 23 mN · m~(-1) at higher pressures (13.89 to 20.79 MPa) and for the entire temperature range. A predominant buoyancy effect is observable at higher pressures due to the reduction in phase density differences. Comparatively, the evaluated IFT data trends are about (S to 7) mN · m~(-1) lower at high pressures than those reported in most of the literature.
机译:这项工作提供了在压力和温度范围(1.48至20.76)MPa和(298.15至333.15)K范围内的CO2-水系统的界面张力(IFT)数据。IFT评估是使用悬滴法进行的。通过使用饱和相密度和较长的预饱和时间,可以避免文献中观察到的不精确性,例如考虑纯相密度和较短的预饱和时间。使用文献相关性评估富水相密度,并使用状态方程建模方法评估富CO2相密度。同样,将预饱和时间延长至24小时,以获得二氧化碳水系统的平衡IFT数据。可以观察到,当亚临界温度和超临界温度下的富二氧化碳相都是气体时,IFT随压力降低。此外,在较高的压力(13.89至20.79 MPa)和整个温度范围内,IFT值在约23 mN·m〜(-1)处达到平稳状态。由于相密度差的减小,在较高的压力下可观察到主要的浮力作用。相比之下,在高压下评估的IFT数据趋势比大多数文献报道的趋势低(S至7)mN·m〜(-1)。

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