A new model for atmospheric oxygen over Phanerozoic time

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Abstract

A mathematical model has been constructed that enables calculation of the level of atmospheric O2 over the past 570 my from rates of burial and weathering of organic carbon (C) and pyrite sulfur (S). Burial rates as a function of time are calculated from an assumed constant worldwide clastic sedimentation rate and the relative abundance, and C and S contents, of the three rock types: marine sandstones and shales, coal basin sediments, and other nonmarine clastics (red beds, arkoses). Results of the modeling indicate that atmospheric O2 probably has varied appreciably over Phanerozoic time. During the Late Carboniferous and Permian periods O2 was higher than previously because of the rise of vascular land plants and the widespread burial of organic matter in vast coal swamps. A large decrease in O2 during the Late Permian was due probably to the drying-up of the coal swamps and deposition of a large proportion of total sediment in C and S-free continental red beds. -from Author

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Berner, R. A., & Canfield, D. E. (1989). A new model for atmospheric oxygen over Phanerozoic time. American Journal of Science, 289(4), 333–361. https://doi.org/10.2475/ajs.289.4.333

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