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A Surface Hydrothermal Source of Nitriles and Isonitriles

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Peer-reviewed

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Abstract

Giant impacts can generate transient hydrogen-rich atmospheres, reducing atmospheric carbon. The reduced carbon will form hazes that rain out onto the surface and can become incorporated into the crust. Once heated, a large fraction of the carbon would be converted into graphite. The result is that local regions of the Hadean crust were plausibly saturated with graphite. We explore the consequences of such a crust for a prebiotic surface hydrothermal vent scenario. We model a surface vent fed by nitrogen-rich volcanic gas from high-temperature magmas passing through graphite-saturated crust. We consider this occurring at pressures of 1-1000 bar and temperatures of 1500-1700 degC. The equilibrium with graphite purifies the left-over gas, resulting in substantial quantities of nitriles (0.1% HCN and 1 ppm HC3N) and isonitriles (0.01% HNC) relevant for prebiotic chemistry. We use these results to predict gas-phase concentrations of methyl isonitrile of ~ 1 ppm. Methyl isocyanide can participate in the non-enzymatic activation and ligation of the monomeric building blocks of life, and surface, or shallow, hydrothermal environments provide its only known equilibrium geochemical source.

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Peer reviewed: True


Acknowledgements: We thank Craig Walton and David Catling for helpful conversations about this work. We thank the anonymous referees and Shang-Min Tsai for constructive comments on the draft that helped to improve the work.


Publication status: Published

Journal Title

Life

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Journal ISSN

2075-1729
2075-1729

Volume Title

14

Publisher

MDPI AG

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Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Cambridge Planetary Science and Life in the Universe Research Grants Scheme (2021-22)
IPLU grant on “Quantifying Aliveness” (Cambridge Planetary Science and Life in the Universe Research Grants Scheme 2021-22).