The surface chlorophyll concentration measured by satellites is commonly interpreted as a direct measure of phytoplankton biomass. However, one problem with this interpretation is that the amount of chlorophyll per amount of algal biomass (the Chl:C ratio) is not constant. In this article, we show that the interpretation ‘chlorophyll=biomass’ can in fact even lead to erroneous conclusions. We use a simple plankton model coupled to a water column model and to the Modular Ocean Model to simulate the seasonal chlorophyll dynamics in the Mozambique Channel and we compare these simulations with satellite observations of the seasonal variation of the chlorophyll concentration in this region. When we take the Chl:C ratio in our plankton model fixe...
The ratio of chlorophyll a per cell and carbon per cell is considered to be a key quantity in phytop...
Phytoplankton make up approximately half of the global biosphere production. Climate change is predi...
Phytoplankton regulate internal pigment concentrations in response to light and nutrient availabilit...
The surface chlorophyll concentration measured by satellites is commonly interpreted as a direct mea...
The surface chlorophyll concentration measured by satellites is commonly interpreted as a direct mea...
Empirically-based satellite estimates of chlorophyll a [Chl] (e.g. OC3) are an important indicator o...
Phytoplankton biomass is often inferred from chlorophyll, however, since biogeochemistry in the ocea...
Chlorophyll a is often used as a proxy to estimate marine phytoplankton biomass given its optical pr...
Chlorophyll a is used as a proxy to estimate marine phytoplankton biomass because it is easily measu...
A widely-used theory of the photoacclimatory response in phytoplankton has, until now, been solved u...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
Primary production and photoacclimation models are two important classes of physiological models tha...
We analyse the coupling between sea surface chlorophyll concentration (CC) and the physical environm...
Chlorophyll (Chl) is a distinctive component of autotrophic organisms, often used as an indicator of...
Phytoplankton biomass and size structure are recognized as key ecological indicators. With the aim t...
The ratio of chlorophyll a per cell and carbon per cell is considered to be a key quantity in phytop...
Phytoplankton make up approximately half of the global biosphere production. Climate change is predi...
Phytoplankton regulate internal pigment concentrations in response to light and nutrient availabilit...
The surface chlorophyll concentration measured by satellites is commonly interpreted as a direct mea...
The surface chlorophyll concentration measured by satellites is commonly interpreted as a direct mea...
Empirically-based satellite estimates of chlorophyll a [Chl] (e.g. OC3) are an important indicator o...
Phytoplankton biomass is often inferred from chlorophyll, however, since biogeochemistry in the ocea...
Chlorophyll a is often used as a proxy to estimate marine phytoplankton biomass given its optical pr...
Chlorophyll a is used as a proxy to estimate marine phytoplankton biomass because it is easily measu...
A widely-used theory of the photoacclimatory response in phytoplankton has, until now, been solved u...
Over the past decade, techniques have been presented to derive the community structure of phytoplank...
Primary production and photoacclimation models are two important classes of physiological models tha...
We analyse the coupling between sea surface chlorophyll concentration (CC) and the physical environm...
Chlorophyll (Chl) is a distinctive component of autotrophic organisms, often used as an indicator of...
Phytoplankton biomass and size structure are recognized as key ecological indicators. With the aim t...
The ratio of chlorophyll a per cell and carbon per cell is considered to be a key quantity in phytop...
Phytoplankton make up approximately half of the global biosphere production. Climate change is predi...
Phytoplankton regulate internal pigment concentrations in response to light and nutrient availabilit...