We re-examine what controls the deep ocean N:P ratio in the light of recent findings that the C:N:P stoichiometry of phytoplankton varies with growth rate, nutrient and light limitation, species and phylum, and that N2-fixation may be limited by Fe, temperature and/or light in large parts of the world ocean. In particular, we assess whether a systematic change in phytoplankton stoichiometry can alter the deep ocean N:P ratio. To do this we adapt recent models to include non-Redfieldian stoichiometry of phytoplankton and restriction of N2-fixers to a fraction of the surface ocean. We show that a systematic change in phytoplankton C:N:P can alter the concentrations of NO3 and PO4 in the deep ocean but cannot greatly alter their ratio, unless ...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Nearly 75 years ago, Alfred C. Redfield observed a similarity between the elemental composition of m...
We re-examine what controls the deep ocean N:P ratio in the light of recent findings that the C:N:P ...
There is a long-established, remarkable correspondence between the nitrogen-to-phosphorus ratio N:P~...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
The stoichiometric coupling of carbon to limiting nutrients in marine phytoplankton regulates the ma...
Abstract Because phytoplankton live at the interface between the abiotic and the biotic compartments...
Fixed nitrogen (N) limits phytoplankton growth throughout the low latitude ocean. The oceanic reserv...
It is widely recognized that the stoichiometry of nutrient elements in phytoplankton varies within t...
participantEcological stoichiometry is a rapidly expanding research field investigating how the elem...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
The similarity of the average ratios of nitrogen (N) and phosphorus (P) in marine dissolved inorgani...
Oxygen-deficient water masses in the ocean, so-called oxygen minimum zones (OMZ), are said to expand...
The widely used concept of constant ”Redfield” phytoplankton stoichiometry is often applied for esti...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Nearly 75 years ago, Alfred C. Redfield observed a similarity between the elemental composition of m...
We re-examine what controls the deep ocean N:P ratio in the light of recent findings that the C:N:P ...
There is a long-established, remarkable correspondence between the nitrogen-to-phosphorus ratio N:P~...
The controls on the 'Redfield' N:P stoichiometry of marine phytoplankton and hence the N:P ratio of ...
The stoichiometric coupling of carbon to limiting nutrients in marine phytoplankton regulates the ma...
Abstract Because phytoplankton live at the interface between the abiotic and the biotic compartments...
Fixed nitrogen (N) limits phytoplankton growth throughout the low latitude ocean. The oceanic reserv...
It is widely recognized that the stoichiometry of nutrient elements in phytoplankton varies within t...
participantEcological stoichiometry is a rapidly expanding research field investigating how the elem...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
The similarity of the average ratios of nitrogen (N) and phosphorus (P) in marine dissolved inorgani...
Oxygen-deficient water masses in the ocean, so-called oxygen minimum zones (OMZ), are said to expand...
The widely used concept of constant ”Redfield” phytoplankton stoichiometry is often applied for esti...
Nitrogen (N) and phosphorus (P) availability, in addition to other macro- and micronutrients, determ...
Ocean deoxygenation due to climate change may alter redox-sensitive nutrient cycles in the marine en...
Nearly 75 years ago, Alfred C. Redfield observed a similarity between the elemental composition of m...