Spatial Distribution and Controls of Organic Carbon Bound to Reactive Iron Across the Pearl River Estuary–Shelf Continuum, Southern China

Organic carbon bound to reactive iron (OC-FeR) constitutes 10–80% of the organic carbon (OC) preserved in marine sediments. Estuaries are characterized by strong OC-FeR enrichment, but the distribution and preservation of OC-FeR in tropical estuaries remain poorly understood. Here, the total OC (TOC), reactive iron (FeR), OC-FeR, the proportion of OC-FeR to TOC (fOC-FeR), and the isotopic compositions of OC-FeR (δ13COC-FeR) were investigated across the Pearl River Estuary (PRE)–shelf continuum. In the river channels, TOC was relatively low, whereas fOC-FeR maintained moderate levels. In the estuarine bay, despite high FeR contents, the fOC-FeR was severely suppressed by intense hydrodynamic turbulence, frequent sediment resuspension, and rapid iron redox cycling. Conversely, the shelf area exhibited lower FeR abundances yet markedly higher fOC-FeR and OC:FeR molar ratios, demonstrating that a stable hydro-sedimentary regime promotes greater binding stability and enhanced preservation efficiency of OC-FeR. In summary, a pronounced spatial decoupling was identified between FeR abundance and OC-FeR preservation efficiency. Depleted δ13COC-FeR values, coupled with magnetic proxies in the shelf area, reveal that fine-grained, high-coercivity iron oxides (e.g., hematite) effectively protect terrestrial OC during long-distance seaward transport. Our study highlights the spatial heterogeneity of OC-FeR across a tropical compound estuarine–deltaic system and provides new insights into how Fe-bearing minerals from multiple sources couple with OC in river-dominated coastal systems.

Authors

Institutions

Publication Details

Journal
Journal of Marine Science and Engineering
Published
2026-10-04
DOI
https://doi.org/10.3390/jmse14191854
Primary Topic
Marine and coastal ecosystems
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
OCT
article

Spatial Distribution and Controls of Organic Carbon Bound to Reactive Iron Across the Pearl River Estuary–Shelf Continuum, Southern China

Mingjie Yu, Mingkun Li, Marcos A. E. Chaparro, Junyu Lin et al.
Journal of Marine Science and Engineering
Marine and coastal ecosystems
article

Spatial Distribution and Controls of Organic Carbon Bound to Reactive Iron Across the Pearl River Estuary–Shelf Continuum, Southern China

Mingjie Yu, Mingkun Li, Marcos A. E. Chaparro, Junyu Lin, Meng Tang, Liang Chen
article en

Abstract

Organic carbon bound to reactive iron (OC-FeR) constitutes 10–80% of the organic carbon (OC) preserved in marine sediments. Estuaries are characterized by strong OC-FeR enrichment, but the distribution and preservation of OC-FeR in tropical estuaries remain poorly understood. Here, the total OC (TOC), reactive iron (FeR), OC-FeR, the proportion of OC-FeR to TOC (fOC-FeR), and the isotopic compositions of OC-FeR (δ13COC-FeR) were investigated across the Pearl River Estuary (PRE)–shelf continuum. In the river channels, TOC was relatively low, whereas fOC-FeR maintained moderate levels. In the estuarine bay, despite high FeR contents, the fOC-FeR was severely suppressed by intense hydrodynamic turbulence, frequent sediment resuspension, and rapid iron redox cycling. Conversely, the shelf area exhibited lower FeR abundances yet markedly higher fOC-FeR and OC:FeR molar ratios, demonstrating that a stable hydro-sedimentary regime promotes greater binding stability and enhanced preservation efficiency of OC-FeR. In summary, a pronounced spatial decoupling was identified between FeR abundance and OC-FeR preservation efficiency. Depleted δ13COC-FeR values, coupled with magnetic proxies in the shelf area, reveal that fine-grained, high-coercivity iron oxides (e.g., hematite) effectively protect terrestrial OC during long-distance seaward transport. Our study highlights the spatial heterogeneity of OC-FeR across a tropical compound estuarine–deltaic system and provides new insights into how Fe-bearing minerals from multiple sources couple with OC in river-dominated coastal systems.

Journal of Marine Science and EngineeringVol. 14(19)
Consejo Nacional de Investigaciones Científicas y Técnicas (AR), Lingnan Normal University (CN), South China Normal University (CN), Ministry of Natural Resources (CN)
Openalex Percentile: Top 14%
Marine and coastal ecosystems
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.