Redox-sensitive trace metals (Mn, Fe, U, Mo, Re), nutrients and terminal metabolic products (NO3-, NH4+, PO43-, total alkalinity) were for the first time investigated in pore waters of Antarctic coastal sediments. The results of this study reveal a high spatial variability in redox conditions in surface sediments from Potter Cove, King George Island, western Antarctic Peninsula. Particularly in the shallower areas of the bay the significant correlation between sulphate depletion and total alkalinity, the inorganic product of terminal metabolism, indicates sulphate reduction to be the major pathway of organic matter mineralisation. In contrast, dissimilatory metal oxide reduction seems to be prevailing in the newly ice-free areas and the dee...
Rapid and profound climatic and environmental changes have been predicted for the Antarctic Peninsul...
An increasing body of work has underlined the importance of Antarctic sea ice as a reservoir and sou...
Recent recession of the Larsen Ice Shelf C has revealed microbial alterations of illite in marine se...
Redox-sensitive trace metals (Mn, Fe, U, Mo, Re), nutrients and terminal metabolic products (NO3-, N...
Sediments of sub-Antarctic islands have been proposed to be important contributors to natural iron ...
Iron fluxes from reducing sediments and subglacial environments are potential sources of bioavailabl...
Antarctic shelf regions are potential carbon and nutrient cycling hotspots where rapid climatic chan...
Iron (Fe) fluxes from reducing sediments and subglacial environments potentially contribute to bioav...
Recent rapid retreat of glacial front lines and the loss of land ice along the Antarctic margins may...
Despite widespread iron (Fe) limitation in the Southern Ocean, Antarctic coastlines are highly produ...
It is now understood that the Southern Ocean is a high-nutrient, low-chlorophyll zone; production be...
Here we describe biogeochemical processes that lead to the generation of acid rock drainage (ARD) an...
This study was conducted to estimate the potential for natural iron fertilization in the Bellingshau...
Rapid and profound climatic and environmental changes have been predicted for the Antarctic Peninsul...
Recent recession of the Larsen Ice Shelf C has revealed microbial alterations of illite in marine se...
Rapid and profound climatic and environmental changes have been predicted for the Antarctic Peninsul...
An increasing body of work has underlined the importance of Antarctic sea ice as a reservoir and sou...
Recent recession of the Larsen Ice Shelf C has revealed microbial alterations of illite in marine se...
Redox-sensitive trace metals (Mn, Fe, U, Mo, Re), nutrients and terminal metabolic products (NO3-, N...
Sediments of sub-Antarctic islands have been proposed to be important contributors to natural iron ...
Iron fluxes from reducing sediments and subglacial environments are potential sources of bioavailabl...
Antarctic shelf regions are potential carbon and nutrient cycling hotspots where rapid climatic chan...
Iron (Fe) fluxes from reducing sediments and subglacial environments potentially contribute to bioav...
Recent rapid retreat of glacial front lines and the loss of land ice along the Antarctic margins may...
Despite widespread iron (Fe) limitation in the Southern Ocean, Antarctic coastlines are highly produ...
It is now understood that the Southern Ocean is a high-nutrient, low-chlorophyll zone; production be...
Here we describe biogeochemical processes that lead to the generation of acid rock drainage (ARD) an...
This study was conducted to estimate the potential for natural iron fertilization in the Bellingshau...
Rapid and profound climatic and environmental changes have been predicted for the Antarctic Peninsul...
Recent recession of the Larsen Ice Shelf C has revealed microbial alterations of illite in marine se...
Rapid and profound climatic and environmental changes have been predicted for the Antarctic Peninsul...
An increasing body of work has underlined the importance of Antarctic sea ice as a reservoir and sou...
Recent recession of the Larsen Ice Shelf C has revealed microbial alterations of illite in marine se...