On the abundances of noble and biologically relevant gases in Lake Vostok, Antarctica
Olivier Mousis, Azzedine Lakhlifi, Sylvain Picaud, Matthew Pasek, Eric, Chassefi\`ere

TL;DR
This study models the composition of gases in Lake Vostok's water and clathrates, predicting significant depletion of noble gases and enrichment of CO2, to guide future in situ measurements and understand gas sources.
Contribution
It introduces a thermodynamic model to predict gas abundances in Lake Vostok, linking atmospheric composition to lake water and clathrates, aiding future measurement interpretation.
Findings
Xenon and krypton are strongly depleted in lake water.
Argon and methane are moderately depleted.
Carbon dioxide is substantially enriched in lake water.
Abstract
Motivated by the possibility of comparing theoretical predictions of Lake Vostok's composition with future in situ measurements, we investigate the composition of clathrates that are expected to form in this environment from the air supplied to the lake by melting ice. In order to establish the best possible correlation between the lake water composition with that of air clathrates formed in situ, we use a statistical thermodynamic model based on the description of the guest-clathrate interaction by a spherically averaged Kihara potential with a nominal set of potential parameters. We determine the fugacities of the different volatiles present in the lake by defining a "pseudo" pure substance dissolved in water owning the average properties of the mixture and by using the Redlich-Kwong equation of state to mimic its thermodynamic behavior. Irrespective of the clathrate structure…
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Taxonomy
TopicsAtmospheric Ozone and Climate · Methane Hydrates and Related Phenomena · Polar Research and Ecology
