A new chemical scheme for giant planet thermochemistry. Update of the methanol chemistry and new reduced chemical scheme
arXiv:1912.07246 · doi:10.1051/0004-6361/201936697
Abstract
Several chemical networks have been developed to study warm (exo)planetary atmospheres. The kinetics of the reactions related to the methanol chemistry included in these schemes have been questioned. The goal of this paper is to update the methanol chemistry for such chemical networks thanks to recent publications in the combustion literature. We aim also at studying the consequences of this update on the atmospheric compositions of (exo)planetary atmospheres and brown dwarfs. We have performed an extensive review of combustion experimental studies and revisited the sub-mechanism describing methanol combustion in the scheme of Venot et al. (2012, A&A 624, A58). The updated scheme involves 108 species linked by a total of 1906 reactions. We have then applied our 1D kinetic model with this new scheme to several case studies (HD 209458b, HD 189733b, GJ 436b, GJ 1214b, ULAS J1335+11, Uranus, Neptune), and compared the results obtained with those obtained with the former scheme. The update of the scheme has a negligible impact on hot Jupiters atmospheres. However, the atmospheric composition of warm Neptunes and brown dwarfs is modified sufficiently to impact observational spectra in the wavelength range JWST will operate. Concerning Uranus and Neptune, the update of the chemical scheme modifies the abundance of CO and thus impacts the deep oxygen abundance required to reproduce the observational data. For future 3D kinetics models, we also derived a reduced scheme containing 44 species and 582 reactions. Chemical schemes should be regularly updated in order to maintain a high level of reliability on the results of kinetic models and be able to improve our knowledge on planetary formation.
18 pages, 23 figures, accepted for publication in A&A
References in corpus (12)
- Tau-REx I: A next generation retrieval code for exoplanetary atmospheres
- Fingering convection and cloudless models for cool brown dwarf atmospheres
- A chemical model for the atmosphere of hot Jupiters
- Toward the analysis of JWST exoplanet spectra: Identifying troublesome model parameters
- Probable detection of hydrogen sulphide (HS) in Neptune's atmosphere
- Constraining the Origins of Neptune's Carbon Monoxide Abundance with CARMA Millimeter-wave Observations
- Scientific rationale of Saturn's in situ exploration
- Thermochemistry and vertical mixing in the tropospheres of Uranus and Neptune: How convection inhibition can affect the derivation of deep oxygen abundances
- Detectable molecular features above hydrocarbon haze via transmission spectroscopy with JWST: Case studies of GJ 1214b-, GJ 436b-, HD 97658b-, and Kepler-51b-like planets
- The measured compositions of Uranus and Neptune from their formation on the CO iceline
- A reduced chemical scheme for modelling warm to hot hydrogen-dominated atmospheres
- Modeling synthetic spectra for transiting extrasolar giant planets: detectability of HS and PH with JWST
Cited by in corpus (34)
- Photochemically-produced SO in the atmosphere of WASP-39b
- A Comparative Study of Atmospheric Chemistry with VULCAN
- Beyond Equilibrium Temperature: How the Atmosphere/Interior Connection Affects the Onset of Methane, Ammonia, and Clouds in Warm Transiting Giant Planets
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- A warm Neptune's methane reveals core mass and vigorous atmospheric mixing
- 1D atmospheric study of the temperate sub-Neptune K2-18b
- Grid of Pseudo-2D Chemistry Models for Tidally-Locked Exoplanets. I. The Role of Vertical and Horizontal Mixing
- Observability of signatures of transport-induced chemistry in clear atmospheres of hot gas giant exoplanets
- A comparison of chemical models of exoplanet atmospheres enabled by TauREx 3.1
- Atmospheric chemistry on Uranus and Neptune
- A 3D picture of moist-convection inhibition in hydrogen-rich atmospheres: Implications for K2-18 b
- ARES IV: Probing the atmospheres of the two warm small planets HD 106315 c and HD 3167 c with the HST/WFC3 camera
- Grid of pseudo-2D chemistry models for tidally locked exoplanets -- II. The role of photochemistry
- 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 subsolar oxygen abundance or a radiative region deep in Jupiter revealed by thermochemical modelling
- Data availability and requirements relevant for the Ariel space mission and other exoplanet atmosphere applications
- Impact of stellar flares on the chemical composition and transmission spectra of gaseous exoplanets orbiting M dwarfs
- The metal-poor atmosphere of a Neptune/Sub-Neptune planet progenitor
- A Mini-Chemical Scheme with Net Reactions for 3D GCMs I.: Thermochemical Kinetics
- The deep composition of Uranus and Neptune from in situ exploration and thermochemical modeling
- Day-night transport induced chemistry and clouds on WASP-39b I: Gas-phase composition
- The Exosphere as a Boundary: Origin and Evolution of Airless Bodies in the Inner Solar System and Beyond Including Planets with Silicate Atmospheres
- Colour-magnitude diagrams of transiting Exoplanets -- III. A public code, nine strange planets, and the role of Phosphine
- The deep oxygen abundance in Solar System Giant Planets, with a new derivation for Saturn
- Photodissociation and induced chemical asymmetries on ultra-hot gas giants. A case study of HCN on WASP-76 b
- Cloud and Haze Parameterization in Atmospheric Retrievals: Insights from Titan's Cassini Data and JWST Observations of Hot Jupiters
- An extensively validated C/H/O/N chemical network for hot exoplanet disequilibrium chemistry
- Storms and convection on Uranus and Neptune: impact of methane abundance revealed by a 3D cloud-resolving model
- Unraveling the non-equilibrium chemistry of the temperate sub-Neptune K2-18 b
- Experimental Investigation of the Photochemical Production of Hydrocarbons in Warm Gas Giant Exoplanet Atmospheres
- A re-analysis of equilibrium chemistry in five hot Jupiters
- DARWEN: Data-driven Algorithm for Reduction of Wide Exoplanetary Networks
- Reliability of 1D radiative-convective photochemical-equilibrium retrievals on transit spectra of WASP-107b
- Late gas released in the young Kuiper belt could have significantly contributed to the carbon enrichment of the atmospheres of Neptune and Uranus