Anomalous δ15N values in the Neoarchean associated with an abundant supply of hydrothermal ammonium

A Ashley N. Martin E Eva E. Stüeken (School of Earth and Environmental Sciences, University of St. Andrews) M Michelle M. Gehringer M Monika Markowska H Hubert Vonhof S Stefan Weyer A Axel Hofmann

Abstract

Abstract Unusually high δ15N values in the Neoarchean sedimentary record in the time period from 2.8 to 2.6 Ga, termed the Nitrogen Isotope Event (NIE), might be explained by aerobic N cycling prior to the Great Oxidation Event (GOE). Here we report strongly positive δ15N values up to +42.5 ‰ in ~2.75 – 2.73 Ga shallow-marine carbonates from Zimbabwe. As the corresponding deeper-marine shales exhibit negative δ15N values that are explained by partial biological uptake from a large ammonium reservoir, we interpret our data to have resulted from hydrothermal upwelling of 15N-rich ammonium into shallow, partially oxic waters, consistent with uranium isotope variations. This work shows that anomalous N isotope signatures at the onset of the NIE temporally correlate with extensive volcanic and hydrothermal activity both locally and globally, which may have stimulated primary production and spurred biological innovation in the lead-up to the GOE.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 22, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

A

Ashley N. Martin

E

Eva E. Stüeken

School of Earth and Environmental Sciences, University of St. Andrews

M

Michelle M. Gehringer

M

Monika Markowska

H

Hubert Vonhof

S

Stefan Weyer

A

Axel Hofmann