Light is a key environmental factor for the growth of micro-algae, and optimizing the capture of light is critical for high efficiency production systems. As the density of the population of micro-algae increases, the availability of light decreases, leading to a reduction in the growth rate because of mutual shading, while other effects, such as photo-inhibition, might be especially frequent when the population density is low. Several models in the literature have been developed to take into account light phenomena and predict micro-algal growth, particularly in a mono-culture. With the help of a simple expression for the attenuation of the light, we propose and justify a new growth function that incorporates both photo-inhibition and phot...
Microalgae can be cultivated in closed or open photobioreactors (PBR). In these systems, light rapid...
Microalgae are often seen as important candidates for biofuel production. Claimed advantages over co...
International audienceThe development of mathematical models that can predict photosynthetic product...
Light is a key environmental factor for the growth of micro-algae, and optimizing the capture of lig...
International audienceLight is a key environmental factor for the growth of micro-algae, and optimiz...
International audienceLight is a key environmental factor for the growth of micro-algae, and optimiz...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
International audienceDynamic light regimes strongly impact microalgal photosynthesis efficiency. Fi...
International audienceDynamic light regimes strongly impact microalgal photosynthesis efficiency. Fi...
Dynamic light regimes strongly impact microalgal photosynthesis efficiency. Finding the optimal way ...
The microalgae growth rate in photobioreactors responds with inertia to light stimuli. Here, light v...
Microalgae are photosynthetic microorganisms with a high biotechnological potential. They have many ...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
International audienceMicroalgae can be cultivated in closed or open photobioreactors (PBR). In thes...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
Microalgae can be cultivated in closed or open photobioreactors (PBR). In these systems, light rapid...
Microalgae are often seen as important candidates for biofuel production. Claimed advantages over co...
International audienceThe development of mathematical models that can predict photosynthetic product...
Light is a key environmental factor for the growth of micro-algae, and optimizing the capture of lig...
International audienceLight is a key environmental factor for the growth of micro-algae, and optimiz...
International audienceLight is a key environmental factor for the growth of micro-algae, and optimiz...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
International audienceDynamic light regimes strongly impact microalgal photosynthesis efficiency. Fi...
International audienceDynamic light regimes strongly impact microalgal photosynthesis efficiency. Fi...
Dynamic light regimes strongly impact microalgal photosynthesis efficiency. Finding the optimal way ...
The microalgae growth rate in photobioreactors responds with inertia to light stimuli. Here, light v...
Microalgae are photosynthetic microorganisms with a high biotechnological potential. They have many ...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
International audienceMicroalgae can be cultivated in closed or open photobioreactors (PBR). In thes...
The development of large-scale outdoor microalgae production requires a thorough understanding of mi...
Microalgae can be cultivated in closed or open photobioreactors (PBR). In these systems, light rapid...
Microalgae are often seen as important candidates for biofuel production. Claimed advantages over co...
International audienceThe development of mathematical models that can predict photosynthetic product...