首页> 外文期刊>International Journal of Greenhouse Gas Control >The effects of SO2 contamination, brine salinity, pressure, and temperature on dynamic contact angles and interfacial tension of supercritical CO2/brine/quartz systems
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The effects of SO2 contamination, brine salinity, pressure, and temperature on dynamic contact angles and interfacial tension of supercritical CO2/brine/quartz systems

机译:SO2污染,盐水盐度,压力和温度对超临界CO2 /盐水/石英系统动态接触角和界面张力的影响

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摘要

The successful implementation of geologic CO2 sequestration schemes in deep saline aquifers requires storage sites with minimum risk of CO2 leakage through the caprock and maximum storage capacity in the reservoir rock. Some of the essential parameters that affect the effectiveness of a storage scheme are the density of CO2, the interfacial tension between CO2-rich and aqueous phases, and the wettability of reservoir rock and caprock in contact with these fluids at reservoir conditions (Tokunaga and Wan, 2013). In this study, densities, interfacial tensions, and dynamic contact angles of CO2/brine/quartz systems at high temperatures and pressures were simultaneously measured using the Axisymmetric Drop Shape Analysis with no-Apex (ADSA-NA) method. Measurements were performed at pressures (2000-4000 psig), temperatures (50-100 degrees C), and brine salinities (0.2-5 M) relevant to carbon sequestration in deep saline aquifers. These experimental conditions had not been investigated in the past. Additionally, the effect of SO2 as a co-contaminant (0-6 wt%) was investigated on these parameters for the first time. Contact angle hysteresis was also examined and the possible implications of the results on different CO2 trapping mechanisms were discussed
机译:在深层盐水层中成功实施地质二氧化碳封存方案,需要使二氧化碳从盖层泄漏的风险最小且储集层岩石具有最大储存能力的储藏地点。影响存储方案有效性的一些基本参数包括:CO2的密度,富CO2相与水相之间的界面张力以及在储层条件下与这些流体接触的储层岩石和盖层的润湿性(Tokunaga和Wan) ,2013)。在这项研究中,使用无顶点的轴对称液滴形状分析(ADSA-NA)方法同时测量了高温/高压下CO2 /盐水/石英系统的密度,界面张力和动态接触角。在与深盐含水层中碳固存相关的压力(2000-4000 psig),温度(50-100摄氏度)和盐水盐度(0.2-5 M)下进行测量。过去没有研究过这些实验条件。此外,首次研究了SO2作为共污染物(0-6 wt%)对这些参数的影响。还研究了接触角滞后现象,并讨论了结果对不同CO2捕集机制的可能影响。

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