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New insights into processes controlling the δ<sup>30</sup>Si of sinking diatoms: a seasonally resolved box model approach

Version 2 2025-07-22, 02:04
Version 1 2023-05-20, 15:18
journal contribution
posted on 2025-07-22, 02:04 authored by I Closset, D Cardinal, TW Trull, F Fripiat
<p>In the Southern Ocean, the silicon (Si) biogeochemical cycle is dominated by processes such as the supply of Si into the surface waters, Si uptake into diatom frustules, and their subsequent dissolution and export. Due to the incomplete assimilation of the silicic acid pool (DSi) and isotopic fractionation during silicification, the Si isotopic composition (δ<sup>30</sup>Si) of biogenic silica (BSi) is closely linked to the degree of Si utilization in the mixed layer (ML). In this study, we combined modelling approaches and seasonal sediment trap records of δ<sup>30</sup>Si of exported BSi to investigate the magnitude, timing, and isotopic composition of the flux of siliceous particles transferred from the surface to the deep ocean. We implemented a box model to describe the temporal evolution of DSi and BSi concentrations and δ<sup>30</sup>Si in the ML and at depth. The model allows us to quantify fluxes of Si in and out of the ML associated with export, dissolution, and mixing. It highlights that the time‐integrated δ<sup>30</sup>Si of exported BSi measured in the sediments reflects the extent of DSi consumption at the time when net BSi production and diatom accumulation are maximal in the ML and confirms that the δ<sup>30</sup>Si of diatoms is a reliable proxy for past Si utilization.</p>

History

Publication title

Global Biogeochemical Cycles

Volume

33

Issue

8

Pagination

957-970

ISSN

0886-6236

Department/School

Australian Antarctic Program Partnership

Publisher

Amer Geophysical Union

Publication status

  • Published

Place of publication

2000 Florida Ave Nw, Washington, USA, Dc, 20009

Rights statement

Copyright 2019 American Geophysical Union

Socio-economic Objectives

180402 Antarctic and Southern Ocean oceanic processes

UN Sustainable Development Goals

14 Life Below Water

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