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Experimental and thermodynamic modelling of systems containing water and ethylene glycol: Application to flow assurance and gas processing

机译:包含水和乙二醇的系统的实验和热力学建模:在流量保证和气体处理中的应用

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Accurate knowledge of hydrate phase equilibrium in the presence of inhibitors is crucial to avoid gas hydrate formation problems and to design/optimize production, transportation and processing facilities. in this communication, we report new experimental dissociation data for various systems consisting of methane/water/ethylene glycol and natural gas/water/ethylene glycol. A statistical thermodynamic approach, with the Cubic-Plus-Association equation of state, is employed to model the phase equilibria. The hydrate-forming conditions are modelled by the solid solution theory of van der Waals and Platteeuw. The thermodynamic model was used to predict the hydrate dissociation conditions of methane and natural gases in the presence of distilled water or ethylene glycol aqueous solutions. Predictions of the developed model are validated against independent experimental data and the data generated in this work. A good agreement between predictions and experimental data is observed, supporting the reliability of the developed model.
机译:在抑制剂存在下对水合物相平衡的准确了解对于避免天然气水合物形成问题以及设计/优化生产,运输和加工设备至关重要。在此通讯中,我们报告了由甲烷/水/乙二醇和天然气/水/乙二醇组成的各种系统的新实验解离数据。采用统计热力学方法,具有状态的三次加缔合方程,可以对相平衡进行建模。水合物的形成条件通过范德华和普拉特乌夫的固溶理论进行建模。使用热力学模型来预测在蒸馏水或乙二醇水溶液存在下甲烷和天然气的水合物分解条件。根据独立的实验数据和该工作中生成的数据验证了开发模型的预测。观察到的预测和实验数据之间的良好一致性,支持开发的模型的可靠性。

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