International audienceAn emerging idea is to couple wastewater treatment and biofuel production using microalgae to achieve higher productivities and lower costs. This paper proposes a metabolic modeling of Chlorella sp. growing on fermentation wastes (blend of acetate, butyrate and other acids) in mixotrophic conditions, accounting also for the possible inhibitory substrates. This model extends previous works by modifying the metabolic network to include the consumption of glycerol and glucose by Chlorella sp., with the goal to test the addition of these substrates in order to overcome butyrate inhibition. The metabolic model was built using the DRUM framework and consists of 188 reactions and 173 metabolites. After a calibration phase, th...
Microalgae are promising microorganisms that efficiently transform renewable resources into biomass ...
[[abstract]]One way to reconcile an issue associating with the harvesting of microalgal biomass is v...
International audienceMicroalgae can be cultivated on waste dark fermentation effluents containing v...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
In order to improve algal biofuel production on a commercial-scale, an understanding of algal growth...
Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, particularly...
<div><p>Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, part...
Background: The maximization of lipid productivity in microalgae is crucial for the biofuel industry...
International audienceCoupling an anaerobic digester to a microalgal culture has received increasing...
International audienceThe coupling between a microalgal pond and an anaerobic digester is a promisin...
Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, particularly...
The economic production of algal biofuels requires novel strategies, such as microbial consortia and...
International audienceBackgroundMicroalgae have been proposed as potential platform to produce lipid...
Microalgae are promising microorganisms that efficiently transform renewable resources into biomass ...
[[abstract]]One way to reconcile an issue associating with the harvesting of microalgal biomass is v...
International audienceMicroalgae can be cultivated on waste dark fermentation effluents containing v...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
Microalgae are promising microorganisms for the production of numerous molecules of interest, such a...
In order to improve algal biofuel production on a commercial-scale, an understanding of algal growth...
Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, particularly...
<div><p>Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, part...
Background: The maximization of lipid productivity in microalgae is crucial for the biofuel industry...
International audienceCoupling an anaerobic digester to a microalgal culture has received increasing...
International audienceThe coupling between a microalgal pond and an anaerobic digester is a promisin...
Metabolic modeling is a powerful tool to understand, predict and optimize bioprocesses, particularly...
The economic production of algal biofuels requires novel strategies, such as microbial consortia and...
International audienceBackgroundMicroalgae have been proposed as potential platform to produce lipid...
Microalgae are promising microorganisms that efficiently transform renewable resources into biomass ...
[[abstract]]One way to reconcile an issue associating with the harvesting of microalgal biomass is v...
International audienceMicroalgae can be cultivated on waste dark fermentation effluents containing v...