Linking impact melt redox with crustal weathering regime

Author:

Black Benjamin A.1ORCID,Brounce Maryjo2

Affiliation:

1. 1Department of Earth and Planetary Sciences, Rutgers University, Piscataway, New Jersey 08854, USA

2. 2Department of Earth and Planetary Sciences, University of California–Riverside, Riverside, California 92521, USA

Abstract

Abstract Impact melting and outgassing of impact melts were important processes shaping the crust and atmosphere of early Earth and Mars. The redox state of impact melts influences the gases they release, but the controls on impact melt redox are not well understood. Here, we present Fe micro–X-ray absorption near edge structure (μ-XANES) measurements of a suite of impact melt glasses from Lonar crater, India. As an impact into continental flood basalts, Lonar crater is an ideal analog for impacts into basaltic crust on early Earth and Mars. The Fe-μ-XANES technique permits robust characterization of the Fe3+/ΣFe ratio and therefore redox conditions in Lonar glasses. We found a range in Fe3+/ΣFe of 0.21–0.49 among Lonar glasses, including substantial intraclast variations. We conclude that a primary factor driving these variations was pre-impact oxidative weathering of target rocks. The coupling between crustal weathering regime and speciation of gases released from impact melts implies that impact melt outgassing could act as a feedback mechanism to reinforce prevailing surface redox conditions.

Publisher

Geological Society of America

Subject

Geology

Reference35 articles.

1. Quantifying chemical weathering intensity and trace element release from two contrasting basalt profiles, Deccan Traps, India;Babechuk;Chemical Geology,2014

2. A re-assessment of the oxidation state of iron in MORB glasses;Berry;Earth and Planetary Science Letters,2018

3. Ferric/ferrous ratio in silicate melts: A new model for 1 atm data with special emphasis on the effects of melt composition;Borisov;Contributions to Mineralogy and Petrology,2018

4. The mantle source of basalts from Reunion Island is not more oxidized than the MORB source mantle;Brounce;Contributions to Mineralogy and Petrology,2022

5. Simulating the behavior of volatiles belonging to the C–O–H–S system in silicate melts under magmatic conditions with the software D-Compress;Burgisser;Computers & Geosciences,2015

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