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Hydrological control on soil redox condition and carbon loss of coastal wetland under sea-kevel rise

April 15, 2026

Coastal wetlands are critical carbon sinks with their biogeochemical and ecological functioning shaped by dynamic hydrological conditions that are increasingly influenced by climate change. A key unresolved question is how hydrologic flow, vegetation response, and rising sea levels interact to regulate soil redox condition and carbon loss in coastal wetlands. Using a field-tested hydrological–biogeochemical–ecological modeling framework, we reveal how the interplay between terrestrial groundwater discharge and tidal fluctuations generates complex groundwater flow patterns at the terrestrial–aquatic interface, and how these patterns modulate soil redox conditions, in turn influencing soil organic matter decomposition and carbon loss. Notably, rising sea levels suppress soil CO2 emissions while reducing lateral dissolved carbon losses, thereby enhancing litter carbon sequestration under anoxic conditions. As vegetation responds to sea-level rise and carbon inputs diminish, litter carbon subsequently declines. These findings underscore a critical hydrological control on carbon cycling, advancing our understanding of coastal ecosystem resilience in a warming world.

Publication Year 2026
Title Hydrological control on soil redox condition and carbon loss of coastal wetland under sea-kevel rise
DOI 10.1029/2025EF007528
Authors Kewei Chen, Fengming Yuan, Peter E. Thornton, Teri O'Meara, Eric J. Ward, Shannon Jones, Bailey Murphy, Melinda Martinez, Sergio Merino, Benjamin N. Sulman
Publication Type Article
Publication Subtype Journal Article
Series Title Earth's Future
Index ID 70278975
Record Source USGS Publications Warehouse
USGS Organization Eastern Ecological Science Center
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