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Project: Simulating Estuarine Wetland Function: Nitrogen Removal, Carbon Sequestration, and Greenhouse Gas Fluxes at the River-Land-Ocean Interface
Title Date
Improving Biogeochemical Modeling of Coastal Regions in a Land Surface Model by Representing Mangrove Hydrology and Ecosystem Functions ESMD -
Modeling how redox interactions drive variability in wetland greenhouse gas production, consumption, and surface emissions from site to continental scales ESMD -
Integrated Modeling of Tidal Hydrology and Biogeochemistry along an Estuarine Salinity Gradient with focus on Carbon Dynamics ESMD -
Evaluating hydrodynamic influence on lateral carbon discharge and sediment greenhouse gas emissions for a Louisiana delta salt marsh ESMD -
Representation of mangrove hydrology and ecosystem functions to improve biogeochemical modeling of coastal regions in a land surface model ESMD -
Modeling Coastal Blue Carbon Sequestration in Northern Gulf Coast Marsh Migrations ESMD -
Simulating tide-driven wetland soil redox and biogeochemical interactions in a land surface model ESMD -
Simulating Coastal Wetland Hydro-Biogeochemistry in a Land Surface Model: Tidal Flows, Redox Dynamics, and Vegetation Interactions ESMD -
Integrating Redox and Soil Geochemical Interactions with Carbon Cycling in a Land Surface Model ESMD
Representing coastal wetland vegetation responses to salinity in Earth system models ESMD
Modeling Salinity and Flooding Impacts on Methane Production across Submerging Deltaic Wetlands ESMD
Integrating tide-driven wetland soil redox and biogeochemical interactions into the E3SM Land Model ESMD

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