paper

Thermodynamic characterization of the ( + ) binary system for the development of models for CCS processes: Accurate experimental (, , ) data and virial coefficients

arXiv:2409.06312 · doi:10.1016/j.supflu.2020.105074

Abstract

Continuing our study on ( + ) mixtures, this work reports new experimental(, , ) data for two oxygen-rich mixtures with mole fractions () = (0.50 and 0.75) mol/mol, in the temperature range = (250-375) K and pressure range = (0.5-20) MPa, using a single-sinker densimeter. Experimental density data were compared to two well-established equation-of-state models: EOS-CG and GERG-2008. In the , -range investigated, the EOS-CG gave a better reproduction for the equimolar mixture () = 0.5, whereas the GERG-2008 performed significantly better for the oxygen-rich mixture () = 0.75. The EOS-CG generally overestimates the density, while the GERG-2008 underestimates it. This complete set of new experimental data, together with previous measurements, is used to calculate the virial coefficients (, ) and (, ), as well as the second interaction virial coefficient () for the ( + ) system.

Thermodynamic characterization of the ($CO_{2}$ + $O_{2}$) binary system for the development of models for CCS processes: Accurate experimental ($p$, $ρ$, $T$) data and virial coefficients · wovepaper