Accurate quantification of pelagic primary production is essential for quantifying the marine carbon turnover and the energy supply to the food web. Knowing the electron requirement (Κ) for carbon (C) fixation (ΚC) and oxygen (O2) production (ΚO2), variable fluorescence has the potential to quantify primary production in microalgae, and hereby increasing spatial and temporal resolution of measurements compared to traditional methods. Here we quantify ΚC and ΚO2 through measures of Pulse Amplitude Modulated (PAM) fluorometry, C fixation and O2 production in an Arctic fjord (Godthåbsfjorden, W Greenland). Through short- (2h) and long-term (24h) experiments, rates of electron transfer (ETRPSII), C fixation and/or O2 production were quantified ...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
Assessing phytoplankton productivity over space and time remains a core goal for oceanographers and ...
Marine phytoplankton account for about 50 % of all global net primary productivity (NPP). Active flu...
Accurate quantification of pelagic primary production is essential for quantifying the marine carbon...
Marine phytoplankton primary productivity, the photosynthetic conversion of CO₂ into organic carbon ...
Marine phytoplankton account for about 50% of all global net primary productivity (NPP). Active fluo...
We examined the light absorption properties and light-dependent rates of photosynthetic electron tra...
<div><p>Marine phytoplankton account for about 50% of all global net primary productivity (NPP). Act...
Estimates of aquatic primary productivity derived from in situ active chl a fluorescence have rapidl...
Predicting conversion of photosynthetic electron transport to inorganic carbon uptake rates (the so-...
Phytoplankton contribute half of the primary production (PP) in the biosphere and are the major sour...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Microphytobenthos primary production was measured using C fixation and compared with production esti...
© 2019 Zhu, Suggett, Liu, He, Lin, Le, Ishizaka, Goes and Hao. Predicting conversion of photosynthet...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
Assessing phytoplankton productivity over space and time remains a core goal for oceanographers and ...
Marine phytoplankton account for about 50 % of all global net primary productivity (NPP). Active flu...
Accurate quantification of pelagic primary production is essential for quantifying the marine carbon...
Marine phytoplankton primary productivity, the photosynthetic conversion of CO₂ into organic carbon ...
Marine phytoplankton account for about 50% of all global net primary productivity (NPP). Active fluo...
We examined the light absorption properties and light-dependent rates of photosynthetic electron tra...
<div><p>Marine phytoplankton account for about 50% of all global net primary productivity (NPP). Act...
Estimates of aquatic primary productivity derived from in situ active chl a fluorescence have rapidl...
Predicting conversion of photosynthetic electron transport to inorganic carbon uptake rates (the so-...
Phytoplankton contribute half of the primary production (PP) in the biosphere and are the major sour...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Patches of benthic diatoms covered 23 to 73% of the sediment area at water depths down to 30 m of a ...
Microphytobenthos primary production was measured using C fixation and compared with production esti...
© 2019 Zhu, Suggett, Liu, He, Lin, Le, Ishizaka, Goes and Hao. Predicting conversion of photosynthet...
During summer 2007, Arctic microphytobenthic potential primary production was measured at several st...
Assessing phytoplankton productivity over space and time remains a core goal for oceanographers and ...
Marine phytoplankton account for about 50 % of all global net primary productivity (NPP). Active flu...