Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a high Arctic fjord system (Young Sound, NE Greenland). Mapping of the in situ chlorophyll (chl a) fluorescence by a pulse amplitude modulated (PAM) fluorometer demonstrated the presence of diatom-covered sediment patches with a characteristic size scale of 5 to 8 m. The benthic diatoms were well adapted to the ambient irradiance as demonstrated by in situ measurements of the relative electron transport rate (ETR) versus irradiance. However, the characteristics of the PE (photosynthesis versus downwelling irradiance) relations changed within minutes after exposure to changed light conditions neutralizing any depth related light acclimation. Thi...
Marine phytoplankton primary productivity, the photosynthetic conversion of CO₂ into organic carbon ...
The Arctic Ocean is particularly affected by climate change, with changes in sea ice cover expected ...
International audienceThe Arctic Ocean is particularly affected by climate change, with changes in s...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Diatoms form dense blooms in the Pacific Arctic region from spring to summer, supporting the unique ...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
We present the first year-round estimates of benthic primary production at four contrasting shallow ...
We present the first year-round estimates of benthic primary production at four contrasting shallow ...
Accurate quantification of pelagic primary production is essential for quantifying the marine carbon...
We compared primary production and respiration of temperate (Helgoland, North Sea) and subtidal Arct...
We compared primary production and respiration of temperate (Helgoland, North Sea) and subtidal Arct...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
Organisms in shallow waters at high latitudes are under pressure due to climate change. These areas ...
Marine phytoplankton primary productivity, the photosynthetic conversion of CO₂ into organic carbon ...
The Arctic Ocean is particularly affected by climate change, with changes in sea ice cover expected ...
International audienceThe Arctic Ocean is particularly affected by climate change, with changes in s...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Diatoms form dense blooms in the Pacific Arctic region from spring to summer, supporting the unique ...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
We present the first year-round estimates of benthic primary production at four contrasting shallow ...
We present the first year-round estimates of benthic primary production at four contrasting shallow ...
Accurate quantification of pelagic primary production is essential for quantifying the marine carbon...
We compared primary production and respiration of temperate (Helgoland, North Sea) and subtidal Arct...
We compared primary production and respiration of temperate (Helgoland, North Sea) and subtidal Arct...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
Organisms in shallow waters at high latitudes are under pressure due to climate change. These areas ...
Marine phytoplankton primary productivity, the photosynthetic conversion of CO₂ into organic carbon ...
The Arctic Ocean is particularly affected by climate change, with changes in sea ice cover expected ...
International audienceThe Arctic Ocean is particularly affected by climate change, with changes in s...