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Experimental measurements and modelling of carbon dioxide hydrate phase equilibrium with and without ethanol

机译:有和没有乙醇的情况下二氧化碳水合物相平衡的实验测量和建模

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In this study, three-phase equilibrium conditions of liquid water-hydrate-vapour (L-W-H-V) were experimentally determined for carbon dioxide hydrates with and without ethanol, a thermodynamic hydrate inhibitor, at temperatures ranging from 275.65 to 281.65 K and pressures up to 3.5 MPa. A thermodynamic model for predicting hydrate dissociation conditions was developed. The model was based on the van der Waals-Platteeuw statistical model for the solid hydrate phase, and on the Cubic Plus Association (CPA) equation of state for the vapour and liquid phases. The Kihara potential parameters for the hydrate model were estimated using experimental and literature (L-W-H-V) equilibrium data. The agreement between the experimental and the predicted dissociation pressure was in general acceptable, with an average absolute deviation of about 2.10%. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,实验确定了液态水合水蒸气(LWHV)的三相平衡条件,其中有或没有乙醇,一种热力学水合物抑制剂,温度为275.65至281.65 K,压力最高为3.5 MPa 。建立了预测水合物离解条件的热力学模型。该模型基于用于固体水合物相的Van der Waals-Platteeuw统计模型,以及基于气相和液相的Cubic Plus Association(CPA)状态方程。使用实验和文献(L-W-H-V)平衡数据估算水合物模型的Kihara势参数。实验和预测的解离压力之间的一致性通常是可以接受的,平均绝对偏差约为2.10%。 (C)2015 Elsevier B.V.保留所有权利。

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