This paper presents a mathematical model capable of quantitative prediction of the state of the photosynthetic apparatus of microalgae in terms of their open, closed and damaged reaction centers under variable light conditions. This model combines the processes of photoproduction and photoinhibition in the Han model with a novel mathematical representation of photoprotective mechanisms, including qE-quenching and qI-quenching. For calibration and validation purposes, the model can be used to simulate fluorescence fluxes, such as those measured in PAM fluorometry, as well as classical fluorescence indexes. A calibration is carried out for the microalga Nannochloropsis gaditana, whereby 9 out of the 13 model parameters are estimated with good...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
AbstractA generally applicable kinetic model is presented to predict light limited microalgal growth...
This paper presents a mathematical model capable of quantitative prediction of the state of the phot...
Reliable quantitative description of light-limited growth in microalgae is key to improving the desi...
Microalgae are often seen as important candidates for biofuel production. Claimed advantages over co...
International audienceMicroalgae are often considered a promising alternative for production of rene...
International audienceOn-line monitoring growth of microalgal based processes is a challenging issue...
Biofuels derived from microalgae may represent a key source for alternative energy vectors. Moreover...
Fluorescence is a powerful tool in characterizing the photosynthetic properties of microalgae. In th...
Microalgae processing represents one of the most promising new technologies for sustainable producti...
This paper presents a multi-physics modeling methodology for the quantitative prediction of microalg...
Microalgae are often considered a promising alternative for production of renewable energy, particul...
International audienceThe development of mathematical models that can predict photosynthetic product...
Microalgae are unicellular and photosynthetic microorganisms which grow thanks to inorganic salts, C...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
AbstractA generally applicable kinetic model is presented to predict light limited microalgal growth...
This paper presents a mathematical model capable of quantitative prediction of the state of the phot...
Reliable quantitative description of light-limited growth in microalgae is key to improving the desi...
Microalgae are often seen as important candidates for biofuel production. Claimed advantages over co...
International audienceMicroalgae are often considered a promising alternative for production of rene...
International audienceOn-line monitoring growth of microalgal based processes is a challenging issue...
Biofuels derived from microalgae may represent a key source for alternative energy vectors. Moreover...
Fluorescence is a powerful tool in characterizing the photosynthetic properties of microalgae. In th...
Microalgae processing represents one of the most promising new technologies for sustainable producti...
This paper presents a multi-physics modeling methodology for the quantitative prediction of microalg...
Microalgae are often considered a promising alternative for production of renewable energy, particul...
International audienceThe development of mathematical models that can predict photosynthetic product...
Microalgae are unicellular and photosynthetic microorganisms which grow thanks to inorganic salts, C...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
The development of mathematical models capable of accurate predictions of the photosynthetic product...
AbstractA generally applicable kinetic model is presented to predict light limited microalgal growth...