Non-isoplethic measurement on the solid–liquid–vapor equilibrium of binary mixtures at cryogenic temperatures

Author:

Raposa Shaelyn M.1ORCID,Tan Sugata P.2ORCID,Grundy William M.13,Lindberg Gerrick E.1ORCID,Hanley Jennifer13,Steckloff Jordan K.24,Tegler Stephen C.1,Engle Anna E.1,Thieberger Cecilia L.1

Affiliation:

1. Department of Astronomy and Planetary Science, Northern Arizona University, Flagstaff, Arizona 86011, USA

2. Planetary Science Institute, Tucson, Arizona 85719, USA

3. Lowell Observatory, Flagstaff, Arizona 86001, USA

4. University of Texas at Austin, Austin, Texas 78705, USA

Abstract

We measured the solid–liquid–vapor (SLV) equilibrium of binary mixtures during experiments that alternated between cooling the mixture and injecting the more-volatile component into the sample chamber; thus, the composition of the mixture changed (non-isoplethic) throughout the experiment. Four binary mixtures were used in the experiments to represent mixtures with miscible solid phases (N2/CO) and barely miscible solid solutions (N2/C2H6), as well as mixtures with intermediate solid miscibility (N2/CH4 and CO/CH4). We measured new SLV pressure data for the binary mixtures, except for N2/CH4, which are also available in the literature for verification in this work. While these mixtures are of great interest in planetary science and cryogenics, the resulting pressure data are also needed for modeling purposes. We found the results for N2/CH4 to be consistent with the literature. The resulting new SLV curve for CO/CH4 shows similarities to N2/CH4. Both have two density inversion points (bracketing the temperature range where the solid floats). This result is important for places such as Pluto, Triton, and Titan, where these mixtures exist in vapor, liquid, and solid phases. Based on our experiments, the presence of a eutectic is unlikely for the N2/CH4 and CO/CH4 systems. An azeotrope with or without a peritectic is likely, but further investigations are needed to confirm. The N2/CO system does not have a density inversion point, as the ice always sinks in its liquid. For N2/C2H6, new SLV pressure data were measured near each triple point of the pure components.

Funder

National Aeronautics and Space Administration

John and Maureen Hendricks Charitable Foundation

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Fluids meet solids;The Journal of Chemical Physics;2023-06-08

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