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February 19, 2026Geology0 citations

Control of early diagenesis on rare earth element cycling and enrichment in pelagic hydrothermal-influenced sediments

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YDYinan DengGZGanglan ZhangYZYangtao Zhu

Key Points

  • This research investigates how early diagenesis affects the cycling and enrichment of rare earth elements and yttrium in hydrothermal-influenced sediments.
  • Collected geochemical data from seawater, pore water, and bioapatite in the eastern South Pacific Ocean.
  • Analyzed the scavenging of REE and Y by hydrothermal Fe-Mn oxides and their role in diagenesis.
  • Quantified Nd burial and benthic flux rates in sediments.
  • Hydrothermal Fe-Mn oxides scavenge REE + Y from seawater, with a Nd burial flux of ∼206 pmol cm−2 yr−1.
  • A benthic flux of Nd was determined to be 24 pmol cm−2 yr−1 during early diagenesis.
  • REE + Y release occurs mainly at the sediment-seawater interface, with minimal mobilization in deeper sediment layers.

Abstract

Hydrothermal plumes impact oceanic rare earth element and yttrium (REE + Y) cycling through Fe-Mn particle scavenging. However, REE + Y cycling and enrichment mechanisms in hydrothermal-influenced sediments remain poorly constrained. Here, we present geochemical data for seawater, pore water, and bioapatite from a hydrothermal-influenced region in the eastern South Pacific Ocean. Our results reveal that hydrothermal Fe-Mn oxides scavenge REE + Y from the water column (Nd burial flux: ∼206 pmol cm−2 yr−1) and then act as a source of benthic flux (Nd: 24 pmol cm−2 yr−1) during early diagenesis. Early diagenetic REE + Y release in metalliferous sediments mainly occurs at the sediment-seawater interface, with deep burial environments showing only sporadic and low-magnitude mobilization. This diagenetic flux dominates REE + Y enrichment in bioapatite, and radiogenic εNd signatures of bioapatite at the sediment-water interface provide direct evidence of pore-water processes.

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Cite This Study

Deng et al. (2026) studied this question.

synapsesocial.com/papers/6996a768ecb39a600b3ed0f1https://doi.org/10.1130/g54294.1
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