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首页> 外文期刊>Fluid Phase Equilibria >FLUID MULTIPHASE BEHAVIOR IN TERNARY MIXTURES, OF CO2, H2O AND 1-BUTANOL
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FLUID MULTIPHASE BEHAVIOR IN TERNARY MIXTURES, OF CO2, H2O AND 1-BUTANOL

机译:三元混合物中CO2,H2O和1-丁醇的流体多相行为

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A unique feature in the CO2-H2O-1-butanol system is the formation of four fluid phases in thermodynamic equilibrium. Investigations into this phenomenon now permit a complete description of phase behavior between 296 K and 315 K at pressures ranging from 5.8 MPa to 11.0 MPa, The experimental programme covers the determination of equilibrium compositions in fluid three-and four-phase equilibria as well as measurements of critical lines and critical endpoints. Experiments were selected in order to prove Gibbs' theorems on the formation of four-phase equilibria in ternary systems. Calculations using the Redlich-Kwong-Soave equation of state in combination with mixing rules proposed by Huron and Vidal complete the description of phase behavior in regions hardly or not accessible by experiment. The model, at least qualitatively, is capable of predicting the full extent and variety of the phase behavior for CO2-H2O-1-butanol mixtures from binary two-phase equilibrium data alone. Considerable improvement towards a quantitative description, however, can be achieved when p,T-data along the four-phase line of the system is incorporated in the evaluation of the interaction parameters of the empirical mixing rules. (C) 1997 Elsevier Science B.V. [References: 12]
机译:CO2-H2O-1-丁醇系统的一个独特功能是在热力学平衡状态下形成了四个流体相。现在,对该现象的研究可以完整描述在5.8 MPa至11.0 MPa压力下296 K和315 K之间的相行为。该实验程序涵盖了流体三相和四相平衡中平衡组成的确定以及测量关键线和关键端点。选择实验是为了证明吉布斯定理关于三元系统中四相平衡的形成。使用Redlich-Kwong-Soave状态方程并结合Huron和Vidal提出的混合规则进行的计算完成了对实验难以或无法访问的区域中相行为的描述。该模型至少在定性上能够仅从二元两相平衡数据中预测CO2-H2O-1-丁醇混合物的相行为的完整程度和变化。但是,如果将沿系统四相线的p,T数据合并到经验混合规则的交互参数的评估中,则可以实现对定量描述的显着改进。 (C)1997 Elsevier Science B.V. [参考:12]

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