Modeling of Contact Angle versus pH and Derivation of Contact Angle versus Pressure in Deep Saline Aquifers under Geological Carbon Storage

A. Miadonye, M. Amadu
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引用次数: 1

Abstract

Geological storage of anthropogenic carbon dioxide is regarded as a technically and economically viable strategy for mitigating carbon dioxide induced climate warming. Central to geological storage of anthropogenic carbon dioxide is the water rock interaction, which has a direct bearing on pH induced wettability evolution in saline aquifers. Consequently, understanding contact angle trend versus injected gas pressure is useful, considering its relationship to pH evolution in formation brine due to dissolved gas at prevailing temperatures and salinities. Several research works have published experimental data on contact angle versus pressure pertaining to geological conditions of anthropogenic carbon storage. In the present study, we have used thermodynamic theories relating to a surface charge model, contact angle and the classical Nernst equation to derive a logarithmic pH dependent contact angle equation. Considering the relationship between carbon dioxide solubility and pressure for a given temperature and salinity as well as the link between pH and the extent of solubility, we have plotted calculated contact angles versus corresponding pressures. Results of the plots obtained compare well with literature values. Therefore, given the lack of theoretical approach regarding contact angle versus pressure, our research work fills the knowledge gap considering the novelty in the derivation of the pH dependent contact angle equation.
地质储碳条件下深层咸水含水层接触角随pH值变化的建模及接触角随压力的推导
人为二氧化碳的地质储存被认为是一种技术上和经济上可行的缓解二氧化碳引起的气候变暖的策略。人为二氧化碳地质储存的核心是水岩相互作用,这对pH诱导的咸水含水层润湿性演化有直接影响。因此,考虑到接触角趋势与地层盐水pH值演变的关系(由于在普遍温度和盐度下溶解气体),了解接触角趋势与注入气体压力的关系是有用的。一些研究工作已经发表了与人为碳储存的地质条件有关的接触角与压力的实验数据。在本研究中,我们使用了与表面电荷模型、接触角和经典能斯特方程相关的热力学理论,推导了一个对数pH依赖的接触角方程。考虑到给定温度和盐度下二氧化碳溶解度与压力之间的关系,以及pH值与溶解度之间的联系,我们绘制了计算出的接触角与相应压力的关系。所得结果与文献值吻合较好。因此,鉴于缺乏关于接触角与压力的理论方法,我们的研究工作填补了考虑到pH相关接触角方程推导的新颖性的知识空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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