Measurements of nitrate and carbon uptake made in July 2006 in the Northeast Atlantic Ocean are evaluated with reference to the photophysiology of the attendant phytoplankton population. Over the 11-day observation period integrated chlorophyll concentrations and carbon fixation rates decreased by 76% and 60%, respectively. Integrated nitrate uptake decreased by 50% from initial to final rates but was generally less variable than carbon fixation and chlorophyll in the intervening period. Satellite derived estimates of surface chlorophyll concentrations reveal the uptake observations to be coincident with, and subsequent to, a peak in summer time production. Large reductions in diatom and dinoflagellate abundance were also seen at this time,...
Picophytoplankton carbon biomass at the Bermuda Atlantic Time-series Study (BATS) site from June 200...
Relationships between sea surface temperature (SST, > 10 m) and vertical density stratification, nut...
Redfield stoichiometry has proved a robust paradigm for the understanding of biological production a...
We have made daily measurements of phytoplankton pigments, size-fractionated (<2 and >2-?m) ca...
We have made daily measurements of phytoplankton pigments, size-fractionated (2-μm) carbon fixation ...
The North Atlantic Ocean is one of the strongest oceanic carbon sinks and is heavily influenced by b...
Ocean biological processes play an important role in the global carbon cycle via the production of o...
Redfield stoichiometry has proved a robust paradigm for the understanding of biological production a...
Phytoplankton regulate internal pigment concentrations in response to light and nutrient availabilit...
The North Atlantic Ocean is considered a nitrogen (N) limited system once vernal stabilisation of th...
The North Atlantic Oscillation (NAO) is a major mode of variability in the North Atlantic, dominatin...
Much of the variability in the surface ocean's carbon cycle can be attributed to the availability of...
Phytoplankton biomass in the world's oceans amounts to only ∽1–2% of the total global plant carbon, ...
In temperate shelf seas, a deep chlorophyll maximum (DCM) persists within the thermocline during sum...
Much of the variability in the surface ocean's carbon cycle can be attributed to the availability of...
Picophytoplankton carbon biomass at the Bermuda Atlantic Time-series Study (BATS) site from June 200...
Relationships between sea surface temperature (SST, > 10 m) and vertical density stratification, nut...
Redfield stoichiometry has proved a robust paradigm for the understanding of biological production a...
We have made daily measurements of phytoplankton pigments, size-fractionated (<2 and >2-?m) ca...
We have made daily measurements of phytoplankton pigments, size-fractionated (2-μm) carbon fixation ...
The North Atlantic Ocean is one of the strongest oceanic carbon sinks and is heavily influenced by b...
Ocean biological processes play an important role in the global carbon cycle via the production of o...
Redfield stoichiometry has proved a robust paradigm for the understanding of biological production a...
Phytoplankton regulate internal pigment concentrations in response to light and nutrient availabilit...
The North Atlantic Ocean is considered a nitrogen (N) limited system once vernal stabilisation of th...
The North Atlantic Oscillation (NAO) is a major mode of variability in the North Atlantic, dominatin...
Much of the variability in the surface ocean's carbon cycle can be attributed to the availability of...
Phytoplankton biomass in the world's oceans amounts to only ∽1–2% of the total global plant carbon, ...
In temperate shelf seas, a deep chlorophyll maximum (DCM) persists within the thermocline during sum...
Much of the variability in the surface ocean's carbon cycle can be attributed to the availability of...
Picophytoplankton carbon biomass at the Bermuda Atlantic Time-series Study (BATS) site from June 200...
Relationships between sea surface temperature (SST, > 10 m) and vertical density stratification, nut...
Redfield stoichiometry has proved a robust paradigm for the understanding of biological production a...