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A SAFT Equation of State for the H2S-CO2-H2O-NaCl system and applications for CO2 - H2S transportation and geological storage

机译:H2S-CO2-H2O-NaCl系统的SAFT状态方程及其在CO2-H2S输送和地质封存中的应用

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摘要

When H2S is co-injected with CO2, we need to know thermodynamic properties and phase equilibria for the CO2-H2S- H2O-NaCl system in order to evaluate the sequestration capacity, optimal transportation and injection conditions, potential for pipeline corrosion, and increased risk of storage and leakage. Here, we summarize the results of the phase equilibrium and densities for CO2-sequestration related systems from a thermodynamic model that is based on statistical associating fluid theory equation of state. The proposed thermodynamic model can be used to represent equilibrium compositions in both phases (H2O-rich/aqueous phases and gas-rich/nonaqueous phases) and the density at equilibrium or in the one phase region. The effect of H2S on the properties of CO2 streams and on the CO2 solubility and the corresponding aqueous solution density can be predicted to provide a knowledge base for both transportation and geological storage. In addition, as other ions such as Ca, Mg, K and SO4 have been taken into account in the model, the properties for brine instead of aqueous NaCl solutions can also be predicted. The equation of state can be incorporated into reservoir simulators to model the separation of phases in multi-phase flow and fluid reactions with reservoir rocks
机译:当H2S与CO2共注入时,我们需要了解CO2-H2S-H2O-NaCl系统的热力学性质和相平衡,以便评估封存能力,最佳运输和注入条件,管道腐蚀的可能性以及增加的风险的存储和泄漏。在这里,我们从一个热力学模型总结了二氧化碳封存相关系统的相平衡和密度结果,该模型基于统计关联的流体理论状态方程。所提出的热力学模型可用于表示两相(富水/水相和富气/非水相)的平衡组成以及平衡或单相区域的密度。可以预测H2S对CO2物流的特性以及对CO2溶解度和相应水溶液浓度的影响,从而为运输和地质存储提供知识基础。另外,由于在模型中考虑了其他离子,例如Ca,Mg,K和SO4,因此也可以预测盐水代替NaCl水溶液的特性。可以将状态方程合并到油藏模拟器中,以模拟多相流和油藏流体反应中的相分离

著录项

  • 作者

    Ji, Xiaoyan; Zhu, Chen;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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