4.3 Article

Thermodynamic Calculations of the Critical Points of the H2-CO2-CH4-CO-H2O System

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出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s10765-020-02725-5

关键词

Critical point; High pressure; High temperature; Hydrogen mixture; Phase equilibrium

资金

  1. National Key R&D Program of China [2016YFB0600100]

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Knowledge of the stability limit and critical point of the H-2-CO2-CH4-CO-H2O system is significant for the management and optimization of the gasification systems of organic substances in supercritical water. We report thermodynamic calculations of the stability limits and critical points of the H-2-CO2-CH4-CO-H2O system based on the cubic equation of state. Prior to the calculations of the quinary system, phase equilibria of the H-2-CO(2)and CH4-C(2)H(6)systems and critical points of the CO2-H2O system were calculated and compared with experimental data. The calculated temperature stability limit decreased as the mole fraction of H(2)in the quinary system increased. The calculated critical point of the (0.50 H-2 + 0.01 CO2 + 0.02 CH4 + 0.02 CO + 0.45 H2O) mixture (in mole fractions) was at about 610 K and 300 MPa. The increase in the mole fraction of CO(2)or H2O and the corresponding decrease of the mole fraction of H(2)in the quinary system would make the critical temperature and pressure change significantly. The calculations indicated that all thep-Tstates of the quinary system in our previous work were stable.

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