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Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications

Chromium stable isotope composition (δ(53)Cr) is a promising tracer for redox conditions throughout Earth's history; however, the geochemical controls of δ(53)Cr have not been assessed in modern redox‐stratified basins. We present new chromium (Cr) concentration and δ(53)Cr data in dissolved, s...

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Autores principales: Janssen, David J., Rickli, Jörg, Wille, Martin, Sepúlveda Steiner, Oscar, Vogel, Hendrik, Dellwig, Olaf, Berg, Jasmine S., Bouffard, Damien, Lever, Mark A., Hassler, Christel S., Jaccard, Samuel L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787902/
https://www.ncbi.nlm.nih.gov/pubmed/36589775
http://dx.doi.org/10.1029/2022GL099154
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author Janssen, David J.
Rickli, Jörg
Wille, Martin
Sepúlveda Steiner, Oscar
Vogel, Hendrik
Dellwig, Olaf
Berg, Jasmine S.
Bouffard, Damien
Lever, Mark A.
Hassler, Christel S.
Jaccard, Samuel L.
author_facet Janssen, David J.
Rickli, Jörg
Wille, Martin
Sepúlveda Steiner, Oscar
Vogel, Hendrik
Dellwig, Olaf
Berg, Jasmine S.
Bouffard, Damien
Lever, Mark A.
Hassler, Christel S.
Jaccard, Samuel L.
author_sort Janssen, David J.
collection PubMed
description Chromium stable isotope composition (δ(53)Cr) is a promising tracer for redox conditions throughout Earth's history; however, the geochemical controls of δ(53)Cr have not been assessed in modern redox‐stratified basins. We present new chromium (Cr) concentration and δ(53)Cr data in dissolved, sinking particulate, and sediment samples from the redox‐stratified Lake Cadagno (Switzerland), a modern Proterozoic ocean analog. These data demonstrate isotope fractionation during incomplete (non‐quantitative) reduction and removal of Cr above the chemocline, driving isotopically light Cr accumulation in euxinic deep waters. Sediment authigenic Cr is isotopically distinct from overlying waters but comparable to average continental crust. New and published data from other redox‐stratified basins show analogous patterns. This challenges assumptions from δ(53)Cr paleoredox applications that quantitative Cr reduction and removal limits isotope fractionation. Instead, fractionation from non‐quantitative Cr removal leads to sedimentary records offset from overlying waters and not reflecting high δ(53)Cr from oxidative continental weathering.
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spelling pubmed-97879022022-12-28 Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications Janssen, David J. Rickli, Jörg Wille, Martin Sepúlveda Steiner, Oscar Vogel, Hendrik Dellwig, Olaf Berg, Jasmine S. Bouffard, Damien Lever, Mark A. Hassler, Christel S. Jaccard, Samuel L. Geophys Res Lett Research Letter Chromium stable isotope composition (δ(53)Cr) is a promising tracer for redox conditions throughout Earth's history; however, the geochemical controls of δ(53)Cr have not been assessed in modern redox‐stratified basins. We present new chromium (Cr) concentration and δ(53)Cr data in dissolved, sinking particulate, and sediment samples from the redox‐stratified Lake Cadagno (Switzerland), a modern Proterozoic ocean analog. These data demonstrate isotope fractionation during incomplete (non‐quantitative) reduction and removal of Cr above the chemocline, driving isotopically light Cr accumulation in euxinic deep waters. Sediment authigenic Cr is isotopically distinct from overlying waters but comparable to average continental crust. New and published data from other redox‐stratified basins show analogous patterns. This challenges assumptions from δ(53)Cr paleoredox applications that quantitative Cr reduction and removal limits isotope fractionation. Instead, fractionation from non‐quantitative Cr removal leads to sedimentary records offset from overlying waters and not reflecting high δ(53)Cr from oxidative continental weathering. John Wiley and Sons Inc. 2022-10-28 2022-11-16 /pmc/articles/PMC9787902/ /pubmed/36589775 http://dx.doi.org/10.1029/2022GL099154 Text en © 2022. The Authors. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Letter
Janssen, David J.
Rickli, Jörg
Wille, Martin
Sepúlveda Steiner, Oscar
Vogel, Hendrik
Dellwig, Olaf
Berg, Jasmine S.
Bouffard, Damien
Lever, Mark A.
Hassler, Christel S.
Jaccard, Samuel L.
Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title_full Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title_fullStr Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title_full_unstemmed Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title_short Chromium Cycling in Redox‐Stratified Basins Challenges δ(53)Cr Paleoredox Proxy Applications
title_sort chromium cycling in redox‐stratified basins challenges δ(53)cr paleoredox proxy applications
topic Research Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9787902/
https://www.ncbi.nlm.nih.gov/pubmed/36589775
http://dx.doi.org/10.1029/2022GL099154
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