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Model output for: Climate shapes the oxygenation of Earth's atmosphere across the Great Oxidation Event.
Description: | This repository contains the model output described in Garduno et al. (2023). Climate shapes the oxygenation of Earth's atmosphere across the Great Oxidation Event. Submitted to Earth and Planetary Science Letters (EPSL). This study investigates the effects of temperature and humidity variations on the evolution of oxygen and ozone across the Great Oxidation Event (GOE). We use a one-dimensional photochemical model with an Archean chemical scheme to model the GOE, changing the atmospheric temperature and relative humidity profiles to study the effects of climate variability on oxygen and ozone across the GOE. |
Authors: | Garduno, Daniel Ruiz; University of Victoria; 0000-0002-3076-8876 |
Keywords: | Great Oxidation Event Oxygen Ozone Snowball Earth |
Field of Research: | Earth and related environmental sciences > Atmospheric sciences > Planetary atmospheres studies
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Publication Date: | 2023-02-23 |
Publisher: | Federated Research Data Repository / dépôt fédéré de données de recherche |
Funder: | Natural Science and Engineering Research Council of Canada; Discovery Grant; RGPIN-2018-05929 Canadian Space Agency; FAST Grant; 18FAVICB21 Natural Science and Engineering Research Council of Canada; Research Tools and Infrastructure Grant; RTI-2020-00277 Simons Foundation; Simons Foundation grant; SCOL 611878 Geological Society of America; Graduate Student Geoscience Grant; 13160-21 |
URI: | https://doi.org/10.20383/102.0670 |
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Access to this dataset is subject to the following terms:
Creative Commons Public Domain Dedication (CC0 1.0) https://creativecommons.org/publicdomain/zero/1.0/
Citation
Garduno, D. (2023). Model output for: Climate shapes the oxygenation of Earth's atmosphere across the Great Oxidation Event.. Federated Research Data Repository. https://doi.org/10.20383/102.0670