Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density stratified coastal zone of the Baltic Sea is largely based on data from muddy sediments, neglecting the potential contribution of sandy sediments. To gain a more comprehensive understanding of seasonality in this part of the Baltic Sea coast, we measured rates of benthic denitrification, anammox and dissimilatory nitrate reduction to ammonium (DNRA) monthly in the ice-free period of 2016 in both sandy and muddy aphotic sediments, northwestern Gulf of Finland. No anammox was observed. The seasonal cycle of denitrification in both sediment types was related to the hydrography-driven development of bottom water temperature. The seasonal cycle of ...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...
Estuaries are often seen as natural filters of riverine nitrate, but knowledge of this nitrogen sink...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
The Baltic Sea is one of the most eutrophic marine areas in the world. The role of nitrogen as a eut...
The Baltic Sea is one of the most eutrophic marine areas in the world. The role of nitrogen as a eut...
Benthic nitrogen (N) cycling in sandy sediments in the stratified aphotic coastal zone (> 15 m) of t...
Benthic nitrogen (N) cycling in sandy sediments in the stratified aphotic coastal zone (> 15 m) of t...
Benthic processes were measured at a coastal deposition area in the northern Baltic Sea, covering al...
Benthic processes were measured at a coastal deposition area in the northern Baltic Sea, covering al...
Coastal environments are nitrogen (N) removal hot spots, which regulate the amount of land-derived N...
The regulatory roles of temperature, eutrophication and oxygen availability on benthic nitrogen (N) ...
The relative importance of two dissimilatory nitrate reduction pathways, denitrification (DEN) and d...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...
Estuaries are often seen as natural filters of riverine nitrate, but knowledge of this nitrogen sink...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
Current knowledge on the seasonality of benthic nitrate reduction pathways in the aphotic, density s...
The Baltic Sea is one of the most eutrophic marine areas in the world. The role of nitrogen as a eut...
The Baltic Sea is one of the most eutrophic marine areas in the world. The role of nitrogen as a eut...
Benthic nitrogen (N) cycling in sandy sediments in the stratified aphotic coastal zone (> 15 m) of t...
Benthic nitrogen (N) cycling in sandy sediments in the stratified aphotic coastal zone (> 15 m) of t...
Benthic processes were measured at a coastal deposition area in the northern Baltic Sea, covering al...
Benthic processes were measured at a coastal deposition area in the northern Baltic Sea, covering al...
Coastal environments are nitrogen (N) removal hot spots, which regulate the amount of land-derived N...
The regulatory roles of temperature, eutrophication and oxygen availability on benthic nitrogen (N) ...
The relative importance of two dissimilatory nitrate reduction pathways, denitrification (DEN) and d...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...
Estuaries are often seen as natural filters of riverine nitrate, but knowledge of this nitrogen sink...
Over the last decades, the impact of human activities on the global nitrogen (N) cycle has drastical...