Regenerated nitrogen (N) cycling was studied in a turbid and nutrient-rich estuary located in the southeast region of the Yellow Sea (Yeongsan River Estuary; YRE), in order to elucidate the biogeochemical consequences of coastal development. Ammonium regeneration and potential uptake rates were measured from March 2012 to June 2013 using 15N tracer techniques. Size fractionation suggested that small-sized bacteria (<0.7 μm), rather than zooplankton, were responsible for most of the ammonium regeneration. Intermittent freshwater discharge events might have prevented stable zooplankton community development and caused the insignificant role of zooplankton in ammonium regeneration. Ammonium regeneration and potential uptake rates were relat...
In estuaries, the nitrogen cycle can be substantially altered due to anthropogenic activities result...
Anaerobic ammonium oxidation (anammox) as an important process of nitrogen cycle has been studied in...
Comparative rates of nitrogen uptake and NH4+ regeneration by plankton of \u3c153 and \u3c5 μm in si...
Ammonium regeneration, nutrient uptake, bacterial activity and primary production were measured from...
Ammonium uptake and regeneration rates were measured in time course experiments with 15N as a tracer...
Summer-time pelagic nitrogen recycling using an 15NH4+ tracer technique was studied for important bi...
Excess reactive nitrogen (N) flows from agricultural, suburban, and urban systems to coasts, where i...
Annual Meeting of the National-Coastal-Oceanography-Programme - National Research Project on Coastal...
Ammonium regeneration by size-fractionated plankton was measured for 1 year at a coastal station in ...
In this thesis I investigated nitrification, dissolved inorganic and organic nitrogen uptake, and th...
International audienceWe investigated the spatial distribution and seasonal variation of dissolved i...
Microbial potential uptake and regeneration rates of ammonium (NH4 +) were studied along a salinity ...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
The rational eutrophication management largely depends on the knowledge of the dynamics in the disso...
It is well known that most primary production is fueled by regenerated nitrogen in the open ocean. T...
In estuaries, the nitrogen cycle can be substantially altered due to anthropogenic activities result...
Anaerobic ammonium oxidation (anammox) as an important process of nitrogen cycle has been studied in...
Comparative rates of nitrogen uptake and NH4+ regeneration by plankton of \u3c153 and \u3c5 μm in si...
Ammonium regeneration, nutrient uptake, bacterial activity and primary production were measured from...
Ammonium uptake and regeneration rates were measured in time course experiments with 15N as a tracer...
Summer-time pelagic nitrogen recycling using an 15NH4+ tracer technique was studied for important bi...
Excess reactive nitrogen (N) flows from agricultural, suburban, and urban systems to coasts, where i...
Annual Meeting of the National-Coastal-Oceanography-Programme - National Research Project on Coastal...
Ammonium regeneration by size-fractionated plankton was measured for 1 year at a coastal station in ...
In this thesis I investigated nitrification, dissolved inorganic and organic nitrogen uptake, and th...
International audienceWe investigated the spatial distribution and seasonal variation of dissolved i...
Microbial potential uptake and regeneration rates of ammonium (NH4 +) were studied along a salinity ...
Ammonium is a central nutrient in aquatic systems. Yet, cell-specific ammonium assimilation among di...
The rational eutrophication management largely depends on the knowledge of the dynamics in the disso...
It is well known that most primary production is fueled by regenerated nitrogen in the open ocean. T...
In estuaries, the nitrogen cycle can be substantially altered due to anthropogenic activities result...
Anaerobic ammonium oxidation (anammox) as an important process of nitrogen cycle has been studied in...
Comparative rates of nitrogen uptake and NH4+ regeneration by plankton of \u3c153 and \u3c5 μm in si...