A model-based insight into the coupling of nitrogen and sulfur cycles in a coastal upwelling system.
Ontology highlight
ABSTRACT: The biogeochemical cycling in oxygen-minimum zones (OMZs) is dominated by the interactions of microbial nitrogen transformations and, as recently observed in the Chilean upwelling system, also through the energetically less favorable remineralization of sulfate reduction. The latter process is masked, however, by rapid sulfide oxidation, most likely through nitrate reduction. Thus, the cryptic sulfur cycle links with the nitrogen cycle in OMZ settings. Here, we model the physical-chemical water column structure and the observed process rates as driven by formation and sinking of organic detritus, to quantify the nitrogen and sulfur cycles in the Chilean OMZ. A new biogeochemical submodule was developed and coupled to the Regional Ocean Model System (ROMS). The model results generally agree
SUBMITTER: Azhar MA
PROVIDER: S-EPMC4508913 | biostudies-literature | 2014 Mar
REPOSITORIES: biostudies-literature
ACCESS DATA