The origins and concentrations of water, carbon, nitrogen and noble gases on Earth
arXiv:1405.6336 · doi:10.1016/j.epsl.2011.10.040
Abstract
The isotopic compositions of terrestrial hydrogen and nitrogen are clearly different from those of the nebular gas from which the solar system formed, and also differ from most of cometary values. Terrestrial N and H isotopic compositions are in the range of values characterizing primitive meteorites, which suggests that water, nitrogen, and other volatile elements on Earth originated from a cosmochemical reservoir that also sourced the parent bodies of primitive meteorites. Remnants of the proto-solar nebula (PSN) are still present in the mantle, presumably signing the sequestration of PSN gas at an early stage of planetary growth. The contribution of cometary volatiles appears limited to a few percents at most of the total volatile inventory of the Earth. The isotope signatures of H, N, Ne and Ar can be explained by mixing between two end-members of solar and chondritic compositions, respectively, and do not require isotopic fractionation during hydrodynamic escape of an early atmosphere. The terrestrial inventory of 40Ar (produced by the decay of 40K throughout the Earth's history) suggests that a significant fraction of radiogenic argon may be still trapped in the silicate Earth. By normalizing other volatile element abundances to this isotope, it is proposed that the Earth is not as volatile-poor as previously thought. Our planet may indeed contain up to ~3000 ppm water (preferred range : 1000-3000 ppm), and up to ~500 ppm C, both largely sequestrated in the solid Earth. This volatile content is equivalent to a ~2 (+/-1) % contribution of carbonaceous chondrite (CI-CM) material to a dry proto-Earth, which is higher than the contribution of chondritic material advocated to account for the platinum group element budget of the mantle. Such a (relatively) high contribution of volatile-rich matter is consistent with the accretion of a few wet planetesimals during Earth accretion.
Cited by in corpus (116)
- Building Terrestrial Planets
- Origin of water in the inner Solar System: Planetesimals scattered inward during Jupiter and Saturn's rapid gas accretion
- Water Delivery and Giant Impacts in the 'Grand Tack' Scenario
- Astrochemistry and compositions of planetary systems
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- The Nitrogen Budget of Earth
- Bifurcation of planetary building blocks during Solar System formation
- Evidence for multiple magma ocean outgassing and atmospheric loss episodes from mantle noble gases
- Lunar and Terrestrial Planet Formation in the Grand Tack Scenario
- Terrestrial planet formation from lost inner solar system material
- Atmospheric Escape Processes and Planetary Atmospheric Evolution
- Volatile Delivery to Planets from Water-rich Planetesimals around Low Mass Stars
- The Elemental Abundances (with Uncertainties) of the Most Earth-like Planet
- Retention of water in terrestrial magma oceans and carbon-rich early atmospheres
- The formation of the solar system
- Exploring the Origins of Carbon in Terrestrial Worlds
- Early volatile depletion on planetesimals inferred from C-S systematics of iron meteorite parent bodies
- Hydrogen dominated atmospheres on terrestrial mass planets: evidence, origin and evolution
- The long-term evolution of the atmosphere of Venus: processes and feedback mechanisms
- A Lower Limit of Atmospheric Pressure on Early Mars Inferred from Nitrogen and Argon Isotopic Compositions
- The spatial distribution of carbon dust in the early solar nebula and the carbon content of planetesimals
- Escape and fractionation of volatiles and noble gases from Mars-sized planetary embryos and growing protoplanets
- Rates of protoplanetary accretion and differentiation set nitrogen budget of rocky planets
- A very early origin of isotopically distinct nitrogen in inner Solar System protoplanets
- The Origin of Nitrogen on Jupiter and Saturn from the N/N Ratio
- Solar System Physics for Exoplanet Research
- Convective outgassing efficiency in planetary magma oceans: insights from computational fluid dynamics
- Dome C UltraCarbonaceous Antarctic MicroMeteorites Infrared and Raman fingerprints
- Solubility of water in peridotite liquids and the prevalence of steam atmospheres on rocky planets
- Loss and fractionation of noble gas isotopes and moderately volatile elements from planetary embryos and early Venus, Earth and Mars
- The Metal-Silicate Partitioning of Carbon During Earth's Accretion and its Distribution in the Early Solar System
- Origins Space Telescope Mission Concept Study Report
- Hydrogen isotopic evidence for early oxidation of silicate Earth
- Dry Late Accretion inferred from Venus' coupled atmosphere and internal evolution
- The erosion of large primary atmospheres typically leaves behind substantial secondary atmospheres on temperate rocky planets
- An upper limit on late accretion and water delivery in the Trappist-1 exoplanet system
- Formation of Venus, Earth and Mars: Constrained by isotopes
- Earth-like Habitats in Planetary Systems
- The Effects of Initial Abundances on Nitrogen in Protoplanetary Disks
- The distribution of volatile elements during rocky planet formation
- Ammonia snow-lines and ammonium salts desorption
- Setting the Stage: Planet formation and Volatile Delivery
- TESS Reveals a Short-period Sub-Neptune Sibling (HD 86226c) to a Known Long-period Giant Planet
- The Fundamental Connections Between the Solar System and Exoplanetary Science
- The Effect of Planets Beyond the Ice Line on the Accretion of Volatiles by Habitable-Zone Rocky Planets
- A nitrogen-rich atmosphere on ancient Mars consistent with isotopic evolution models
- Numerous chondritic impactors and oxidized magma ocean set Earth's volatile depletion
- Less effective hydrodynamic escape of H-HO atmospheres on terrestrial planets orbiting pre-main sequence M dwarfs
- Waterworlds Probably Do Not Experience Magmatic Outgassing
- Evaluating the Plausible Range of N2O Biosignatures on Exo-Earths: An Integrated Biogeochemical, Photochemical, and Spectral Modeling Approach
- First measurement of the 14N/15N ratio in the analogue of the Sun progenitor OMC-2 FIR4
- Metal-silicate partitioning of W and Mo and the role of carbon in controlling their abundances in the Bulk Silicate Earth
- Realistic collisional water transport during terrestrial planet formation: Self-consistent modeling by an N-body--SPH hybrid code
- Evolution of the Earth's Atmosphere during Late Veneer Accretion
- Atmospheric Recyling of Volatiles by Pebble-Accreting Planets
- Water abundance at the surface of C-complex main-belt asteroids
- Possible Atmospheric Diversity of Low Mass Exoplanets, some Central Aspects
- Earth and Mars -- distinct inner Solar System products
- The nitrogen carrier in protoplanetary disks
- Rocky Planetesimal Formation Aided by Organics
- Impact Induced Atmosphere-Mantle Exchange Sets the Volatile Elemental Ratios on Primitive Earths
- Origin and dynamical evolution of the asteroid belt
- Internal water storage capacity of terrestrial planets and the effect of hydration on the M-R relation
- Diversity of planetary systems in low-mass disks: Terrestrial-type planet formation and water delivery
- ALMA Autocorrelation Spectroscopy of Comets: The HCN/H^13CN ratio in C/2012 S1 (ISON)
- Volatile atmospheres of lava worlds
- Carbon Depletion in the Early Solar System
- Redox evolution of the crystallizing terrestrial magma ocean and its influence on atmosphere outgassing
- Making the Solar System
- Suppression of hydrodynamic escape of an H2-rich early Earth atmosphere by radiative cooling of carbon oxides
- Interior Controls on the Habitability of Rocky Planets
- Escape and evolution of Titan's N atmosphere constrained by N/N isotope ratios
- Evidence for ubiquitous carbon grain destruction in hot protostellar envelopes
- The Roles of Dust Growth in the Temperature Evolution and Snow Line Migration in Magnetically Accreting Protoplanetary Disks
- Anatomy of rocky planets formed by rapid pebble accretion III. Partitioning of volatiles between planetary core, mantle, and atmosphere
- The Exosphere as a Boundary: Origin and Evolution of Airless Bodies in the Inner Solar System and Beyond Including Planets with Silicate Atmospheres
- Non-thermal escape of the Martian CO atmosphere over time: constrained by Ar isotopes
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- In Situ Models for Planet Assembly around Cool stars
- Modification of the radioactive heat budget of Earth-like exoplanets by the loss of primordial atmospheres
- The rapid formation of macromolecules in irradiated ice of protoplanetary disk dust traps
- Nitrogen Atmospheres of the Icy Bodies in the Solar System
- Comparative analysis of the influence of Sgr A* and nearby active galactic nuclei on the mass loss of known exoplanets
- A D/H Ratio Consistent with Earth's Water in Halley-type Comet 12P from ALMA HDO Mapping
- Migrating Jupiter up to the habitable zone: Earth-like planet formation and water delivery
- Mars' atmospheric neon suggests volatile-rich primitive mantle
- The Source of Hydrogen in Earth's Building Blocks
- Composition, Structure and Origin of the Moon
- Diversity of low-mass planet atmospheres in the C-H-O-N-S-Cl system with interior dissolution, nonideality, and condensation: Application to TRAPPIST-1e and sub-Neptunes
- How much water was delivered from the asteroid belt to the Earth after its formation?
- Hydrothermal activities on C-complex asteroids induced by radioactivity
- Deciphering Sub-Neptune Atmospheres: New Insights from Geochemical Models of TOI-270 d
- Water versus land on temperate rocky planets
- Collisional fragmentation and bulk composition tracking in REBOUND
- Crash Chronicles: relative contribution from comets and carbonaceous asteroids to Earth's volatile budget in the context of an Early Instability
- Water solubility in silicate melts: The effects of melt composition under reducing conditions and implications for nebular ingassing on rocky planets
- A formation pathway for terrestrial planets with moderate water content involving atmospheric-volatile recycling
- Multiverse Predictions for Habitability: Planetary Characteristics
- Planet formation: key mechanisms and global models
- The Diffusion Limit of Photoevaporation in Primordial Planetary Atmospheres
- Analysis of CN emission as a marker of organic compounds in meteoroids using laboratory simulated meteors
- Radial variations in nitrogen, carbon, and hydrogen fractionation in the PDS 70 planet-hosting disk
- An impact-free mechanism to deliver water to terrestrial planets and exoplanets
- Exo-Geoscience Perspectives Beyond Habitability
- Outgassing Composition of the Murchison Meteorite: Implications for Volatile Depletion of Planetesimals and Interior-atmosphere Connections for Terrestrial Exoplanets
- Solid Accretion onto Neptune-Mass Planets I: In-Situ Accretion and Constraints from the metallicity of Uranus and Neptune
- Early Solar System Turbulence Constrained by High Oxidation States of the Oldest Non-Carbonaceous Planetesimals
- Crystal Chemistry at High Pressure
- A pebble accretion model for the formation of the terrestrial planets in the Solar System
- The plausibility of origins scenarios requiring two impactors
- On the Efficacy of Ocean Formation with a Primordial Hydrogen Atmosphere
- Formation of the four terrestrial planets in the Jupiter-Saturn chaotic excitation scenario: fundamental properties and water delivery
- Possible Solution to the Triple Alpha Fine-Tuning Problem: Spallation Reactions during Planet Formation
- Variations in the Radius Distribution of Single- and Compact Multiple-transiting Planets
- Carbon Cycle Imbalances on Arid Terrestrial Planets with Implications for Venus
- Evolution and Observable Properties of Rocky Planet Atmospheres