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Modeling phase equilibrium with a modified Wong-Sandler mixing rule for natural gas hydrates: Experimental validation

机译:用改进的Wong-Sandler混合规则对天然气水合物进行相平衡建模:实验验证

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摘要

As natural gas hydrate forms at low temperature and high pressure (i.e., near critical region), vapor phase fugacity calculation becomes crucial in this region due to the intermolecular interactions. This work introduces the modified form of the Wong-Sandler mixing rule in the Peng-Robinson (PR) and Patel-Teja (PT) equation of state (EoS) models to revamp the fugacity calculation of vapor phase. This mixing rule which is based on the excess Gibbs free energy leads to precisely capture the polar and asymmetric properties of mixture components. The modified Wong-Sandler mixing rule is formulated by representing its correction factors for energy and co-volume parameters in terms of temperature and gas-phase composition. Here, the hydrate phase fugacity is determined by the Chen-Guo model that is coupled with an EoS model for hydrate equilibrium analysis. On the other hand, the liquid phase nonideality is estimated by using the Wilson activity-coefficient model. The proposed modified Wong-Sandler based phase equilibrium models are shown to be better than the existing phase rule based models with the three example natural gas hydrate systems (CH4 + N-2, CH4 + C2H6, CH4 + C2H4) using tetrahydrofuran as a thermodynamic promoter. Validating these models with real time data sets, it is further investigated that the PT based model shows a better performance compared to the PR equation of state. This apart, these two models show their superiority over the existing PT-van der Waals (PT-vdW) model, for which, a new parameter set is proposed for the said three systems for their improved performance.
机译:由于天然气水合物在低温和高压下(即在关键区域附近)形成,因此由于分子间的相互作用,气相逸度计算在该区域变得至关重要。这项工作在状态模型(EoS)的Peng-Robinson(PR)和Patel-Teja(PT)模型中引入了Wong-Sandler混合规则的修改形式,以改进气相的逸度计算。这种基于过量吉布斯自由能的混合规则可以精确捕获混合物组分的极性和非对称性质。修改后的Wong-Sandler混合规则是通过表示其针对温度和气相组成的能量和体积参数的校正因子而制定的。在此,水合物相逸度由Chen-Guo模型确定,该模型与EoS模型结合进行水合物平衡分析。另一方面,通过使用威尔逊活度系数模型来估计液相的非理想性。结果表明,以四氢呋喃为热力学的三个示例天然气水合物系统(CH4 + N-2,CH4 + C2H6,CH4 + C2H4),建议的基于Wong-Sandler的改进的相平衡模型优于现有的基于相规则的模型。启动子。用实时数据集验证这些模型,进一步研究了与状态方程相比,基于PT的模型表现出更好的性能。此外,这两个模型显示了它们相对于现有PT-van der Waals(PT-vdW)模型的优越性,为此,为上述三个系统提出了新的参数集以提高其性能。

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