Molybdenum isotopes in plume-influenced MORBs reveal recycling of ancient anoxic sediments
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BORIS DOI
Date of Publication
October 12, 2022
Publication Type
Article
Division/Institute
Subject(s)
Series
Geochemical perspectives letters
ISSN or ISBN (if monograph)
2410-339X
Publisher
European Association of Geochemistry
Language
English
Publisher DOI
Uncontrolled Keywords
Description
Under modern oxidising Earth surface conditions, dehydrated subducted slabs show Mo isotope compositions as low as δ98/95Mo = −1.5 ‰, compared to the depleted mantle δ98/95Mo = −0.2 ‰. Such light Mo isotope compositions reflect the redox-dependent aqueous mobility of isotopically heavy Mo associated with slab dehydration. Here we analysed basaltic glasses from the South-Mid Atlantic Ridge, whose parental melts are influenced by the enriched Discovery and Shona mantle plumes. We report increasingly higher δ98/95Mo of up to −0.1 ‰ from the most depleted samples towards those tapping more enriched mantle sources. δ98/95Mo values correlate with radiogenic Sr and Nd isotopes, which indicates the recycling of Proterozoic sediments with a Mo isotopic composition that was not affected by subduction-related, oxic dehydration. We propose that the Mo isotope signatures were retained during subduction and reflect anoxic conditions during deep sea sedimentation in the mid-Proterozoic. Finally, Mo isotope fractionation between different terrestrial reservoirs likely depends on the slab redox budget, and therefore on the timing of subduction with regard to Earth’s surface oxygenation.
File(s)
File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
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Ahmad et al 2022 GPL.pdf | text | Adobe PDF | 7.94 MB | published |