The Great Oxidation Event (GOE): Biogeochemical Feedback and Tipping Points

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1. Verfasser: Ingersoll, Andrew P.
Format: Preprint
Veröffentlicht: 2025
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author Ingersoll, Andrew P.
author_facet Ingersoll, Andrew P.
contents Approximately 1.4 Ga after life first appeared, atmospheric oxygen suddenly jumped by more than an order of magnitude over a 20-50 Ma period. The contrast between these two timescales does not seem to be due to any sudden, large amplitude change in external forcing. However, it could be due to processes intrinsic to the geobiological system itself, namely, positive feedback between atmospheric oxygen and photosynthetic bacteria: More oxygen leads to more photosynthesis, which leads to more oxygen, and so on. Already-published feedbacks include buildup of an ozone shield and nutrient production by oxidative weathering. The feedback proposed here is the 15-fold greater efficiency of aerobic vs anaerobic respiration and the tight coupling of respiration and photosynthesis inside the cell. As in the climate system, feedback leads to tipping points, where a rapid, large amplitude change in the state of the system occurs. For the geobiological system, the GOE is the tipping point, and the long buildup before the GOE is the gradual oxidation of the crust and ocean, due either to burial of organic matter, oxidation of volcanic gases, or escape of hydrogen to space. The feedback hypothesis is a framework for interpreting observations leading to the GOE.
format Preprint
id arxiv_https___arxiv_org_abs_2512_05305
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Great Oxidation Event (GOE): Biogeochemical Feedback and Tipping Points
Ingersoll, Andrew P.
Atmospheric and Oceanic Physics
Populations and Evolution
Approximately 1.4 Ga after life first appeared, atmospheric oxygen suddenly jumped by more than an order of magnitude over a 20-50 Ma period. The contrast between these two timescales does not seem to be due to any sudden, large amplitude change in external forcing. However, it could be due to processes intrinsic to the geobiological system itself, namely, positive feedback between atmospheric oxygen and photosynthetic bacteria: More oxygen leads to more photosynthesis, which leads to more oxygen, and so on. Already-published feedbacks include buildup of an ozone shield and nutrient production by oxidative weathering. The feedback proposed here is the 15-fold greater efficiency of aerobic vs anaerobic respiration and the tight coupling of respiration and photosynthesis inside the cell. As in the climate system, feedback leads to tipping points, where a rapid, large amplitude change in the state of the system occurs. For the geobiological system, the GOE is the tipping point, and the long buildup before the GOE is the gradual oxidation of the crust and ocean, due either to burial of organic matter, oxidation of volcanic gases, or escape of hydrogen to space. The feedback hypothesis is a framework for interpreting observations leading to the GOE.
title The Great Oxidation Event (GOE): Biogeochemical Feedback and Tipping Points
topic Atmospheric and Oceanic Physics
Populations and Evolution
url https://arxiv.org/abs/2512.05305