The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanced glacial melt water input. This has potential implications for marine ecosystems, notably phytoplankton growth, biomass, and composition. Fifteen years (1997–2012) of year-round size fractionated chlorophyll a (Chl a), phytoplankton pigment fingerprinting and environmental data were analyzed to identify the relationship between sea ice cover, water column stability and phytoplankton dynamics in northern Marguerite Bay, Antarctica. Over the investigated period, both summer (December–February) and winter biomass declined significantly, 38.5% and 33.3% respectively. Winter phytoplankton biomass was low ( 20 μm) fraction was strongly decreased ...
Recent global warming reduces surface water salinity around the Antarctic Peninsula as a result of t...
The coastal waters of the West Antarctic Peninsula (WAP) are associated with large phytoplankton blo...
Coastal zones of Antarctica harbor rich but highly variable phytoplankton communities. The mechanism...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Marine productivity along the western Antarctic Peninsula (WAP) is declining. The WAP is site of the...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Recent global warming reduces surface water salinity around the Antarctic Peninsula as a result of t...
The coastal waters of the West Antarctic Peninsula (WAP) are associated with large phytoplankton blo...
Coastal zones of Antarctica harbor rich but highly variable phytoplankton communities. The mechanism...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
The rapid warming of the West Antarctic Peninsula region has led to reduced sea ice cover and enhanc...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Marine productivity along the western Antarctic Peninsula (WAP) is declining. The WAP is site of the...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Climate change at the Western Antarctic Peninsula (WAP) is predicted to cause major changes in phyto...
Recent global warming reduces surface water salinity around the Antarctic Peninsula as a result of t...
The coastal waters of the West Antarctic Peninsula (WAP) are associated with large phytoplankton blo...
Coastal zones of Antarctica harbor rich but highly variable phytoplankton communities. The mechanism...