1976The Canadian Journal of Chemical EngineeringRequires access

Two and three phase equilibrium calculations for systems containing water

Ding‐Yu Peng, Donald B. Robinson

Open publisher page 37 citations

Abstract

Abstract A recently proposed two‐constant equation of state is used to predict the phase behaviour of systems exhibiting a water‐rich liquid phase, a hydrocarbon‐rich liquid phase and a vapor phase. The algorithm proposed is efficient and thermodynamically rigorous and it converges significantly faster than earlier models. Representative calculations are shown for the methane‐n butane water system, the n butane‐1 butane‐water system, and a synthetic six‐component hydrocarbon mixture containing waer.

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What this paper is about

Abstract A recently proposed two‐constant equation of state is used to predict the phase behaviour of systems exhibiting a water‐rich liquid phase, a hydrocarbon‐rich liquid phase and a vapor phase. The algorithm proposed is efficient and thermodynamically rigorous and it converges significantly faster than earlier models. Representative calculations are shown for the methane‐n butane water system, the n butane‐1 butane‐water system, and a synthetic six‐component hydrocarbon mixture containing waer.

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Available abstract

Abstract A recently proposed two‐constant equation of state is used to predict the phase behaviour of systems exhibiting a water‐rich liquid phase, a hydrocarbon‐rich liquid phase and a vapor phase. The algorithm proposed is efficient and thermodynamically rigorous and it converges significantly faster than earlier models. Representative calculations are shown for the methane‐n butane water system, the n butane‐1 butane‐water system, and a synthetic six‐component hydrocarbon mixture containing waer.

Key concepts: Butane, Hydrocarbon, Methane, Thermodynamics, Component (thermodynamics), Phase (matter), Phase equilibrium, Equation of state

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