Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
arXiv:1902.08022 · doi:10.1016/j.icarus.2019.02.020
Abstract
Hydrogen cyanide (HCN) is a key feedstock molecule for the production of life's building blocks. The formation of HCN in an N-rich atmospheres requires first that the triple bond between NN be severed, and then that the atomic nitrogen find a carbon atom. These two tasks can be accomplished via photochemistry, lightning, impacts, or volcanism. The key requirements for producing appreciable amounts of HCN are the free availability of N and a local carbon to oxygen ratio of C/O . We discuss the chemical mechanisms by which HCN can be formed and destroyed on rocky exoplanets with Earth-like N content and surface water inventories, varying the oxidation state of the dominant carbon-containing atmospheric species. HCN is most readily produced in an atmosphere rich in methane (CH) or acetylene (CH), but can also be produced in significant amounts ( ppm) within CO-dominated atmospheres. Methane is not necessary for the production of HCN. We show how destruction of HCN in a CO-rich atmosphere depends critically on the poorly-constrained energetic barrier for the reaction of HCN with atomic oxygen. We discuss the implications of our results for detecting photochemically produced HCN, for concentrating HCN on the planet's surface, and its importance for prebiotic chemistry.
20 pages, 8 figures, accepted for publication in Icarus
References in corpus (7)
- Chemical enrichment of giant planets and discs due to pebble drift
- Abiotic oxygen-dominated atmospheres on terrestrial habitable zone planets
- VULCAN: an Open-Source, Validated Chemical Kinetics Python Code for Exoplanetary Atmospheres
- Constraints on the Early Terrestrial Surface UV Environment Relevant to Prebiotic Chemistry
- Extrasolar Carbon Planets
- Atmospheric Beacons of Life from Exoplanets Around G and K Stars
- A Consistent Reduced Network for HCN Chemistry in Early Earth and Titan Atmospheres: Quantum Calculations of Reaction Rate Coefficients
Cited by in corpus (47)
- Photochemically-produced SO in the atmosphere of WASP-39b
- A Comparative Study of Atmospheric Chemistry with VULCAN
- Atmospheres of Rocky Exoplanets
- Sulphur dioxide in the mid-infrared transmission spectrum of WASP-39b
- Vertically resolved magma ocean-protoatmosphere evolution: H, HO, CO, CH, CO, O, and N as primary absorbers
- Nitrogen Oxide Concentrations in Natural Waters on Early Earth
- Photochemistry of Anoxic Abiotic Habitable Planet Atmospheres: Impact of New HO Cross-Sections
- Distinguishing oceans of water from magma on mini-Neptune K2-18b
- Detection of an Atmosphere on a Rocky Exoplanet
- Sulfur-driven Haze Formation in Warm CO2-rich Exoplanet Atmospheres
- Lava Worlds: From Early Earth to Exoplanets
- Sulfur Chemistry in the Atmospheres of Warm and Hot Jupiters
- Isotopic constraints on lightning as a source of fixed nitrogen in Earth's early biosphere
- Towards RNA life on Early Earth: From atmospheric HCN to biomolecule production in warm little ponds
- Extending Optical Flare Models to the UV: Results from Comparing of TESS and GALEX Flare Observations For M Dwarfs
- MOVES IV. Modelling the influence of stellar XUV-flux, cosmic rays, and stellar energetic particles on the atmospheric composition of the hot Jupiter HD 189733b
- A New Model Suite to Determine the Influence of Cosmic Rays on (Exo)planetary Atmospheric Biosignatures -- Validation based on Modern Earth
- One Year in the Life of Young Suns: Data Constrained Corona-Wind Model of kappa1 Ceti
- 3D convection-resolving model of temperate, tidally-locked exoplanets
- Ions in the Thermosphere of Exoplanets: Observable Constraints Revealed by Innovative Laboratory Experiments
- Lightning and charge processes in brown dwarf and exoplanet atmospheres
- Ariel Planetary Interiors White Paper
- An experimental and theoretical investigation of HCN production in the Hadean Earth atmosphere
- Photochemistry of Venus-Like Planets Orbiting K- and M-Dwarf Stars
- Prebiosignature Molecules Can Be Detected in Temperate Exoplanet Atmospheres with JWST
- A dry Venusian interior constrained by atmospheric chemistry
- Alternative solvents for life: framework for evaluation, current status and future research
- Detectable Abundance of Cyanoacetylene (HCN) Predicted on Reduced Nitrogen-Rich Super-Earth Atmospheres
- Ground-based HCN submillimetre measurements in Titan's atmosphere: an intercomparison with Herschel observations
- Automated chemical reaction network generation and its application to exoplanet atmospheres
- Can comets deliver prebiotic molecules to rocky exoplanets?
- Proposed energy-metabolisms cannot explain the atmospheric chemistry of Venus
- Finding Signs of Life in Transit: High-resolution Transmission Spectra of Earth-like Planets around FGKM Host Stars
- Characterising the Atmosphere of 55 Cancri e: 1D Forward Model Grid for Current and Future JWST Observations
- The Effect of Metallicity on the Non-Equilibrium Abundance of Hydrogen Dominated Exoplanet Atmosphere
- An HST Transmission Spectrum of the Closest M-Dwarf Transiting Rocky Planet LTT 1445Ab
- Tracing the Inner Edge of the Habitable Zone with Sulfur Chemistry
- Under the magnifying glass: A combined 3D model applied to cloudy warm Saturn type exoplanets around M-dwarfs
- Multiverse Predictions for Habitability: Element Abundances
- DARWEN: Data-driven Algorithm for Reduction of Wide Exoplanetary Networks
- The plausibility of origins scenarios requiring two impactors
- Powerful lightning on Venus constrained by atmospheric NO
- Lightning activity on a tidally locked terrestrial exoplanet in storm-resolving simulations for a range of surface pressures
- Methane on the temperate exo-Saturn TOI-199b
- Photochemistry and Spectral Characterization of Temperate and Gas-Rich Exoplanets
- Hydrocarbon complexity and photochemical shielding of prebiotic feedstock molecules in exoplanet atmospheres
- Starting Life and Searching for Life on Rocky Planets