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Provedor de dados:  ArchiMer
País:  France
Título:  Iron Isotopes Reveal a Benthic Iron Shuttle in the Palaeoproterozoic Zaonega Formation: Basinal Restriction, Euxinia, and the Effect on Global Palaeoredox Proxies
Autores:  Mänd, Kaarel
Lalonde, Stefan
Paiste, Kärt
Thoby, Marie
Lumiste, Kaarel
Robbins, Leslie J.
Kreitsmann, Timmu
Romashkin, Alexander E.
Kirsimäe, Kalle
Lepland, Aivo
Konhauser, Kurt O.
Data:  2021-04
Ano:  2021
Palavras-chave:  Isotope geochemistry
Redox stratification
Benthic Fe shuttle
Dissimilatory iron reduction
Resumo:  The Zaonega Formation in northwest Russia (~2.0 billion years old) is amongst the most complete successions that record the middle of the Palaeoproterozoic era. As such, geochemical data from the formation have played a central role in framing the debate over redox dynamics in the aftermath of the Great Oxidation Event (GOE). However, uncertainty over local redox conditions and the degree of hydrographic restriction in the formation has led to contradictory interpretations regarding global oxygen (O2) fugacity. Here, we provide new iron (Fe) isotope data together with major and trace element concentrations to constrain the local physiochemical conditions. The Zaonega Formation sediments show authigenic Fe accumulation (Fe/Al ≫ 1 wt.%/wt.%) and δ56Fe ranging from −0.58‰ to +0.60‰. Many of the data fall on a negative Fe/Al versus δ56Fe trend, diagnostic of a benthic Fe shuttle, which implies that Zaonega Formation rocks formed in a redox-stratified and semi-restricted basin. However, basin restriction did not coincide with diminished trace metal enrichment, likely due to episodes of deep-water exchange with metal-rich oxygenated seawater, as evidenced by simultaneous authigenic Fe(III) precipitation. If so, the Onega Basin maintained a connection that allowed its sediments to record signals of global ocean chemistry despite significant basinal effects
Tipo:  Text
Idioma:  Inglês
Identificador:  https://archimer.ifremer.fr/doc/00688/79959/82885.pdf

https://archimer.ifremer.fr/doc/00688/79959/82886.zip

DOI:10.3390/min11040368

https://archimer.ifremer.fr/doc/00688/79959/
Editor:  MDPI AG
Formato:  application/pdf
Fonte:  Minerals (2075-163X) (MDPI AG), 2021-04 , Vol. 11 , N. 4 , P. 368 (25p.)
Direitos:  info:eu-repo/semantics/openAccess

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