Monthly time-series data (1998–2009) of bottom water oxygen, nitrate and nitrite concentrations from the outer shelf (150 m water depth) in the oxygen minimum zone offshore Peru were coupled to a layered biogeochemical sediment model to investigate benthic-pelagic coupling over multi-annual time scales. The model includes the mineralization of four reactive pools of particulate organic carbon (POC) with lifetimes of 0.13, 1.3, 20, and 1700 year that were constrained using empirical data. Total POC rain rates to the seafloor were derived from satellite based estimates of primary production. Solute fluxes and concentrations in sediment porewater showed highly dynamic behavior over the course of a typical year. Conversion of fixed N to N2 by d...
Benthic nitrogen (N2) fixation and sulfate reduction (SR) were investigated in the Peruvian oxygen m...
Experimental data and simulations were used to investigate the seasonal coupling between carbon, nit...
Anthropogenic impacts are perturbing the global nitrogen cycle via warming effects and pollutant sou...
Highlights • Very high rates of dissimilatory nitrate reduction to ammonium by Thioploca. • ...
Highlights • Sulphidic event on the shelf resulted in a temporal imbalance of the benthic N cy...
Upwelling of nutrient-rich deep waters make eastern boundary upwelling systems (EBUSs), such as the ...
In combination to sluggish ventilation by ocean currents, the nutrient upwelling and high surface pr...
The benthic nitrogen (N) cycle is highly dynamic and diverse due to the strong redox gradients occur...
Six cores were obtained along a 70-km transect perpendicular to the Peru coast in the highly product...
The intraseasonal evolution of physical and biogeochemical properties during a coastal trapped wave ...
In oxic environments, nitrogen (N) is frequently a limiting nutrient for primary production and henc...
A new box model is employed to simulate the oxygen-dependent cycling of nutrients in the Peruvian ox...
The kinetics of particulate organic carbon (POC) mineralization in marine surface sediments is not w...
Upwelling of nutrient-rich deep waters make eastern boundary upwelling systems (EBUSs), such as the ...
Oxygen minimum zones (OMZs) that impinge on continental margins favor the release of phosphorus (P) ...
Benthic nitrogen (N2) fixation and sulfate reduction (SR) were investigated in the Peruvian oxygen m...
Experimental data and simulations were used to investigate the seasonal coupling between carbon, nit...
Anthropogenic impacts are perturbing the global nitrogen cycle via warming effects and pollutant sou...
Highlights • Very high rates of dissimilatory nitrate reduction to ammonium by Thioploca. • ...
Highlights • Sulphidic event on the shelf resulted in a temporal imbalance of the benthic N cy...
Upwelling of nutrient-rich deep waters make eastern boundary upwelling systems (EBUSs), such as the ...
In combination to sluggish ventilation by ocean currents, the nutrient upwelling and high surface pr...
The benthic nitrogen (N) cycle is highly dynamic and diverse due to the strong redox gradients occur...
Six cores were obtained along a 70-km transect perpendicular to the Peru coast in the highly product...
The intraseasonal evolution of physical and biogeochemical properties during a coastal trapped wave ...
In oxic environments, nitrogen (N) is frequently a limiting nutrient for primary production and henc...
A new box model is employed to simulate the oxygen-dependent cycling of nutrients in the Peruvian ox...
The kinetics of particulate organic carbon (POC) mineralization in marine surface sediments is not w...
Upwelling of nutrient-rich deep waters make eastern boundary upwelling systems (EBUSs), such as the ...
Oxygen minimum zones (OMZs) that impinge on continental margins favor the release of phosphorus (P) ...
Benthic nitrogen (N2) fixation and sulfate reduction (SR) were investigated in the Peruvian oxygen m...
Experimental data and simulations were used to investigate the seasonal coupling between carbon, nit...
Anthropogenic impacts are perturbing the global nitrogen cycle via warming effects and pollutant sou...