Outbursts Upon Cooling of Low-Temperature Binary Mixtures: Experiments and Their Planetary Implications

Fuente: arXiv
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Auteurs principaux: Raposa, S. M., Engle, A. E., Tan, S. P., Grundy, W. M., Hanley, J., Lindberg, G. E., Umurhan, O. M., Steckloff, J. K., Thieberger, C. L., Tegler, S. C.
Format: Preprint
Publié: 2024
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author Raposa, S. M.
Engle, A. E.
Tan, S. P.
Grundy, W. M.
Hanley, J.
Lindberg, G. E.
Umurhan, O. M.
Steckloff, J. K.
Thieberger, C. L.
Tegler, S. C.
author_facet Raposa, S. M.
Engle, A. E.
Tan, S. P.
Grundy, W. M.
Hanley, J.
Lindberg, G. E.
Umurhan, O. M.
Steckloff, J. K.
Thieberger, C. L.
Tegler, S. C.
contents For many binary mixtures, the three-phase solid-liquid-vapor equilibrium curve has intermediate pressures that are higher than the pressure at the two pure triple points. This curve shape results in a negative slope in the high-temperature region near the triple point of the less volatile component. When freezing mixtures in the negative slope regime, fluid trapped below confined ice has latent heat released with more vapor upon cooling, and thus increases in pressure. If the rising pressure of the confined fluid overcomes the strength of the confining solid, which may be its own ice, it can produce an abrupt outburst of material and an increase in the system's overall pressure. Here, we report experimental results of freezing-induced outbursts occurring in the N2/CH4, CO/CH4, and N2/C2H6 systems, and provide insight into the phenomenon through a thermodynamics perspective. We also propose other binary systems that may experience outbursts and explore the geological implications for icy worlds like Titan, Triton, Pluto and Eris, as well as rocky bodies, specifically Earth and Mars.
format Preprint
id arxiv_https___arxiv_org_abs_2410_05633
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Outbursts Upon Cooling of Low-Temperature Binary Mixtures: Experiments and Their Planetary Implications
Raposa, S. M.
Engle, A. E.
Tan, S. P.
Grundy, W. M.
Hanley, J.
Lindberg, G. E.
Umurhan, O. M.
Steckloff, J. K.
Thieberger, C. L.
Tegler, S. C.
Earth and Planetary Astrophysics
For many binary mixtures, the three-phase solid-liquid-vapor equilibrium curve has intermediate pressures that are higher than the pressure at the two pure triple points. This curve shape results in a negative slope in the high-temperature region near the triple point of the less volatile component. When freezing mixtures in the negative slope regime, fluid trapped below confined ice has latent heat released with more vapor upon cooling, and thus increases in pressure. If the rising pressure of the confined fluid overcomes the strength of the confining solid, which may be its own ice, it can produce an abrupt outburst of material and an increase in the system's overall pressure. Here, we report experimental results of freezing-induced outbursts occurring in the N2/CH4, CO/CH4, and N2/C2H6 systems, and provide insight into the phenomenon through a thermodynamics perspective. We also propose other binary systems that may experience outbursts and explore the geological implications for icy worlds like Titan, Triton, Pluto and Eris, as well as rocky bodies, specifically Earth and Mars.
title Outbursts Upon Cooling of Low-Temperature Binary Mixtures: Experiments and Their Planetary Implications
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2410.05633