What controls primary production in the Arctic Ocean? Results from an intercomparison of five general circulation models with biogeochemistry
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Leads in Arctic pack ice enable early phytoplankton blooms below snow-covered sea ice.Amplified Arctic warming by phytoplankton under greenhouse warmingEnhanced role of eddies in the Arctic marine biological pump.Sea ice biogeochemistry: a guide for modellers.The great 2012 Arctic Ocean summer cyclone enhanced biological productivity on the shelves.Chytrids dominate arctic marine fungal communities.An assessment of phytoplankton primary productivity in the Arctic Ocean from satellite ocean color/in situ chlorophyll-a based models.Spatial distributions of Southern Ocean mesozooplankton communities have been resilient to long-term surface warming.Vulnerability of polar oceans to anthropogenic acidification: comparison of arctic and antarctic seasonal cycles.Net primary productivity estimates and environmental variables in the Arctic Ocean: An assessment of coupled physical-biogeochemical modelsChanges in Arctic sea ice result in increasing light transmittance and absorptionTemperature dependence of CO2-enhanced primary production in the European Arctic OceanPhysical and biological controls on oxygen saturation variability in the upper Arctic OceanEffects of Model Resolution and Ocean Mixing on Forced Ice-Ocean Physical and Biogeochemical Simulations Using Global and Regional System ModelsAssessing the magnitude of CO2flux uncertainty in atmospheric CO2records using products from NASA's Carbon Monitoring Flux Pilot ProjectPrimary productivity and the coupling of photosynthetic electron transport and carbon fixation in the Arctic OceanRole of advection in Arctic Ocean lower trophic dynamics: A modeling perspectiveExpansion of vegetated coastal ecosystems in the future ArcticPhysical constrains and productivity in the future Arctic OceanFuture Arctic Ocean primary productivity from CMIP5 simulations: Uncertain outcome, but consistent mechanismsCollapsing Arctic coastlinesEffect of sea-ice melt on inherent optical properties and vertical distribution of solar radiant heating in Arctic surface watersSea ice thermohaline dynamics and biogeochemistry in the Arctic Ocean: Empirical and model resultsAltered inherent optical properties and estimates of the underwater light field during an Arctic under-ice bloom of Phaeocystis pouchetiiMarine CDOM accumulation during a coastal Arctic mesocosm experiment: No response to elevated pCO2levels
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What controls primary production in the Arctic Ocean? Results from an intercomparison of five general circulation models with biogeochemistry
description
article
@en
im Januar 2012 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в січні 2012
@uk
name
What controls primary producti ...... on models with biogeochemistry
@en
What controls primary producti ...... on models with biogeochemistry
@nl
type
label
What controls primary producti ...... on models with biogeochemistry
@en
What controls primary producti ...... on models with biogeochemistry
@nl
prefLabel
What controls primary producti ...... on models with biogeochemistry
@en
What controls primary producti ...... on models with biogeochemistry
@nl
P2093
P2860
P356
P1476
What controls primary producti ...... on models with biogeochemistry
@en
P2093
Andrew C. Coward
Clara Deal
Ekaterina E. Popova
Elizabeth Hunke
Frederic Dupont
Jinlun Zhang
Meibing Jin
Mike Steele
Scott Elliott
P2860
P356
10.1029/2011JC007112
P407
P50
P577
2012-01-31T00:00:00Z