International audienceIntense regional warming was observed in the western Antarctic Peninsula (WAP) over the last 50 years. Here, we investigate the impact of climate change on primary production (PP) in this highly productive region. This study is based on temporal data series of ozone thickness (1972–2010), sea ice concentration (1978–2010), sea-surface temperature (1990–2010), incident irradiance (1988–2010) and satellite-derived chlorophyll a concentration (Chl-a, 1997–2010) for the coastal WAP. In addition, we apply a photosynthesis/photoinhibition spectral model to satellite-derived data (1997–2010) to compute PP and examine the separate impacts of environmental forcings. Since 1978, sea ice retreat has been occurring earlier in the ...
Coastal regions of the Antarctic Peninsula (AP) harbor seasonally thriving populations of phytoplank...
The Western Antarctic Peninsula (WAP), one of the most productive regions of the Southern Ocean, is ...
The West Antarctic Peninsula (WAP) is a climatically sensitive region where periods of strong warmin...
International audienceIntense regional warming was observed in the western Antarctic Peninsula (WAP)...
Intense regional warming was observed in the Western Antarctic Peninsula (WAP) over the last 50 year...
The Western Antarctic Peninsula (WAP), one of the most productive regions of the Southern Ocean, is ...
The coastal ocean of the climatically-sensitive west Antarctic Peninsula is experiencing changes in ...
The Western Antarctic Peninsula (WAP) is a highly productive marine environment that is undergoing r...
Within the framework of the Marine Ecosystem Assessment for the Southern Ocean (MEASO), this paper b...
We report results collected year-round since 1998 in northern Marguerite Bay, just inside the Antarc...
The western Antarctic Peninsula (WAP) is a hotspot of climatic and oceanographic change, with a 6°C ...
We measured primary productivity in the Pacific Sector of the Southern Ocean as part of the Joint Gl...
Sea ice in the western Antarctic Peninsula (WAP) region is both highly variable and rapidly changing...
Coastal regions of the Antarctic Peninsula (AP) harbor seasonally thriving populations of phytoplank...
The Western Antarctic Peninsula (WAP), one of the most productive regions of the Southern Ocean, is ...
The West Antarctic Peninsula (WAP) is a climatically sensitive region where periods of strong warmin...
International audienceIntense regional warming was observed in the western Antarctic Peninsula (WAP)...
Intense regional warming was observed in the Western Antarctic Peninsula (WAP) over the last 50 year...
The Western Antarctic Peninsula (WAP), one of the most productive regions of the Southern Ocean, is ...
The coastal ocean of the climatically-sensitive west Antarctic Peninsula is experiencing changes in ...
The Western Antarctic Peninsula (WAP) is a highly productive marine environment that is undergoing r...
Within the framework of the Marine Ecosystem Assessment for the Southern Ocean (MEASO), this paper b...
We report results collected year-round since 1998 in northern Marguerite Bay, just inside the Antarc...
The western Antarctic Peninsula (WAP) is a hotspot of climatic and oceanographic change, with a 6°C ...
We measured primary productivity in the Pacific Sector of the Southern Ocean as part of the Joint Gl...
Sea ice in the western Antarctic Peninsula (WAP) region is both highly variable and rapidly changing...
Coastal regions of the Antarctic Peninsula (AP) harbor seasonally thriving populations of phytoplank...
The Western Antarctic Peninsula (WAP), one of the most productive regions of the Southern Ocean, is ...
The West Antarctic Peninsula (WAP) is a climatically sensitive region where periods of strong warmin...