Spatiotemporal Patterns and Environmental Controls of Dissolved Organic Matter in Coastal Rivers of the Bohai Rim, China

Dissolved organic matter (DOM) in coastal rivers plays a key role in land–ocean carbon cycling, yet its spatiotemporal dynamics drivers remain poorly understood. This study investigated five typical rivers across the Bohai Rim, China, using ultraviolet–visible absorption, fluorescence spectroscopy, and stable carbon isotope analysis. Fluorescence indices and dual-proxy source characterization indicated that autochthonous DOM, mainly from phytoplankton and microbial metabolism, dominated the bulk DOM pool, whereas terrestrial C3 plant inputs served as secondary but spatially variable sources. Among all measured environmental variables, water temperature exhibited relatively strong correlations with DOM optical properties, while salinity showed limited influence. Mantel tests and partial least squares path modeling further suggested that water temperature indirectly shaped temporal variations in DOM by modulating phytoplankton biomass and diversity, which in turn promoted the production of low-aromaticity autochthonous DOM. This cascading framework synthesizes thermal, nutrient, and microbial controls on fluvial DOM, improving understanding of regional carbon budgets and providing scientific support for integrated management of the Bohai coastal zone.

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Publication Details

Journal
Hydrology
Published
2026-09-22
DOI
https://doi.org/10.3390/hydrology13100262
Primary Topic
Marine and coastal ecosystems
Type
article
Field-Weighted Citation Impact
0.00
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Spatiotemporal Patterns and Environmental Controls of Dissolved Organic Matter in Coastal Rivers of the Bohai Rim, China

Yang Jiao, Meiling Yang, Na Liu, Wanzhu Li et al.
Hydrology
Marine and coastal ecosystems
article

Spatiotemporal Patterns and Environmental Controls of Dissolved Organic Matter in Coastal Rivers of the Bohai Rim, China

Yang Jiao, Meiling Yang, Na Liu, Wanzhu Li, Baoli Wang, Zhen Ren
article en

Abstract

Dissolved organic matter (DOM) in coastal rivers plays a key role in land–ocean carbon cycling, yet its spatiotemporal dynamics drivers remain poorly understood. This study investigated five typical rivers across the Bohai Rim, China, using ultraviolet–visible absorption, fluorescence spectroscopy, and stable carbon isotope analysis. Fluorescence indices and dual-proxy source characterization indicated that autochthonous DOM, mainly from phytoplankton and microbial metabolism, dominated the bulk DOM pool, whereas terrestrial C3 plant inputs served as secondary but spatially variable sources. Among all measured environmental variables, water temperature exhibited relatively strong correlations with DOM optical properties, while salinity showed limited influence. Mantel tests and partial least squares path modeling further suggested that water temperature indirectly shaped temporal variations in DOM by modulating phytoplankton biomass and diversity, which in turn promoted the production of low-aromaticity autochthonous DOM. This cascading framework synthesizes thermal, nutrient, and microbial controls on fluvial DOM, improving understanding of regional carbon budgets and providing scientific support for integrated management of the Bohai coastal zone.

HydrologyVol. 13(10)
Tianjin University (CN)
Life below water
Openalex Percentile: Top 14%
Marine and coastal ecosystems
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Spatiotemporal Patterns and Environmental Controls of Dissolved Organic Matter in Coastal Rivers of the Bohai Rim, China — Yang Jiao, Meiling Yang, et al. · Hydrology (2026) | TGRS Research Map | TGRS