G. sulphuraria is a polyextremophilic microalga that can tolerate low pH, high temperature and high osmotic pressure. We cultivated G. sulphuraria ACUF 064 in chemostat at a biomass concentration of 134 to 243 g⋅m-2 aiming for maximal pigment content without compromising biomass productivity. Autotrophy was compared to ‘oxygen balanced’ mixotrophy with intracellular recirculation of oxygen and carbon dioxide. No differences were found in C-phycocyanin (C-PC) and protein content between autotrophic and mixotrophic cultures. In mixotrophy the biomass productivity and concentration were doubled compared to the photoautotrophic counterpart. In mixotrophy aeration was not needed and 89% of the substrate carbon was converted into biomass. Mixotro...
The extremophilic nature and metabolic flexibility of Galdieria spp. have major potential in several...
Microalgae biotechnology provides a new industrial paradigm that simultaneously yields various vital...
The aim of this work was to valorise an industrial food by-product and to produce a microalgal bioma...
Galdieria sulphuraria is an acidophilic microalga isolated in proximity of sulfuric ponds where pH i...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
Microalgae are photosynthetic microorganisms that can reach higher areal productivity than terrestri...
The extremophile red alga Galdieria sulphuraria was successfully grown immobilized in a twin-layer p...
The relationship between light intensity, nitrogen availability and pigmentation was investigated in...
International audience●Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot sprin...
The use of microalgae as a food source is still poorly developed because of the technical difficulti...
Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot springs and calderas. It gro...
The use of microalgae as a food source is still poorly developed because of the technical difficulti...
Galdieria sulphuraria (G. sulphuraria ) is a eukaryotic, extremophilic, spherical and unicellular sp...
A mixotrophic culture might be used as an alternative to conventional photoautotrophic mass culture ...
In the last years, the acidothermophilic red microalga Galdieria sulphuraria has been increasingly s...
The extremophilic nature and metabolic flexibility of Galdieria spp. have major potential in several...
Microalgae biotechnology provides a new industrial paradigm that simultaneously yields various vital...
The aim of this work was to valorise an industrial food by-product and to produce a microalgal bioma...
Galdieria sulphuraria is an acidophilic microalga isolated in proximity of sulfuric ponds where pH i...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
Microalgae are photosynthetic microorganisms that can reach higher areal productivity than terrestri...
The extremophile red alga Galdieria sulphuraria was successfully grown immobilized in a twin-layer p...
The relationship between light intensity, nitrogen availability and pigmentation was investigated in...
International audience●Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot sprin...
The use of microalgae as a food source is still poorly developed because of the technical difficulti...
Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot springs and calderas. It gro...
The use of microalgae as a food source is still poorly developed because of the technical difficulti...
Galdieria sulphuraria (G. sulphuraria ) is a eukaryotic, extremophilic, spherical and unicellular sp...
A mixotrophic culture might be used as an alternative to conventional photoautotrophic mass culture ...
In the last years, the acidothermophilic red microalga Galdieria sulphuraria has been increasingly s...
The extremophilic nature and metabolic flexibility of Galdieria spp. have major potential in several...
Microalgae biotechnology provides a new industrial paradigm that simultaneously yields various vital...
The aim of this work was to valorise an industrial food by-product and to produce a microalgal bioma...