The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and nutrient limitations. The recent reduction in ice cover has the potential to substantially increase phytoplankton primary production, but little is yet known about the fate of the ice-associated primary production and of the nutrient supply with increasing warming. This study presents results from the central Arctic Ocean collected during summer 2012, when sea-ice extent reached its lowest ever recorded since the onset of satellite observations. Net primary productivity (NPP) was measured in the water column, sea ice and melt ponds by 14CO2 uptake at different irradiances. Photosynthesis vs. irradiance (PI) curves were established in laborator...
Highlights: 1. Satellite estimates of ocean primary productivity (i.e., the rate at which marine alg...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and ...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The Arctic Ocean is changing dramatically due to the rapid sea ice decrease. The reduction in ice th...
Primary productivity in the Arctic Ocean is heavily influenced by sea ice dynamics, which govern lig...
Primary productivity in the Arctic Ocean is heavily influenced by sea ice dynamics, which govern lig...
The Arctic region has been described as exceptionally sensitive to climate change which is evidenced...
The Arctic icescape is rapidly transforming from a thicker multiyear ice cover to a thinner and larg...
Source at http://dx.doi.org/10.1038/srep40850 The Arctic icescape is rapidly transforming from a th...
The Arctic icescape is rapidly transforming from a thicker multiyear ice cover to a thinner and larg...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
Highlights: 1. Satellite estimates of ocean primary productivity (i.e., the rate at which marine alg...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and ...
The ice-covered central Arctic Ocean is characterized by low primary productivity due to light and n...
The Arctic Ocean is changing dramatically due to the rapid sea ice decrease. The reduction in ice th...
Primary productivity in the Arctic Ocean is heavily influenced by sea ice dynamics, which govern lig...
Primary productivity in the Arctic Ocean is heavily influenced by sea ice dynamics, which govern lig...
The Arctic region has been described as exceptionally sensitive to climate change which is evidenced...
The Arctic icescape is rapidly transforming from a thicker multiyear ice cover to a thinner and larg...
Source at http://dx.doi.org/10.1038/srep40850 The Arctic icescape is rapidly transforming from a th...
The Arctic icescape is rapidly transforming from a thicker multiyear ice cover to a thinner and larg...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
Highlights: 1. Satellite estimates of ocean primary productivity (i.e., the rate at which marine alg...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...
Observations of the seasonal light field in the upper Arctic Ocean are critical to understanding the...