Comparing two ocean biogeochemical models of Chesapeake Bay with and without the sulfur cycle instead highlights the importance of particle sinking, burial, organic matter, nitrification and light attenuation

Author:

Jin RuiORCID,Pradal Marie-Aude,Hantsoo Kalev,Gnanadesikan Anand,St-Laurent Pierre,Bjerrum Christian J.

Funder

Danmarks Grundforskningsfond

US Department of Energy Office of Science

NOAA Climate Program Office

Villum Fonden

Publisher

Elsevier BV

Subject

Atmospheric Science,Geotechnical Engineering and Engineering Geology,Computer Science (miscellaneous),Oceanography

Reference36 articles.

1. Microbial genes, genomes and taxa associated with key aspects of pathogenesis and biogeochemical cycles;Arora-Williams,2020

2. Abundant and persistent sulfur-oxidizing microbial populations are responsive to hypoxia in the Chesapeake Bay;Arora-Williams;Environ. Microbiol.,2022

3. A model-based insight into the coupling of nitrogen and sulfur cycles in a coastal upwelling system;Azhar;J. Geophys. Res. Biogeosciences,2014

4. The changing carbon cycle of the coastal ocean;Bauer;Nature,2013

5. Particulate organic carbon cycling and transformation;Bianchi,2011

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