Galdieria sulphuraria is an acidophilic microalga isolated in proximity of sulfuric ponds where pH is below 3 and most organisms cannot grow. We cultivated G. sulphuraria ACUF 64 free of contamination for over 2 months in a medium containing organic carbon at pH 1.7 with continuous, high intensity, lighting. We compared biomass productivity of chemostat and repeated batch cultivations. The optimal biomass density in autotrophic and mixotrophic cultures was identified. In autotrophy biomass productivity was 28.3 gx·m−2·day−1, 1.8 to 7.7-fold higher than previously reported. Autotrophy was compared to ‘oxygen balanced’ mixotrophy where intracellular recirculation of O2 and CO2 take place. Aeration was not needed and 92% of the substrate carbo...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
Microalgae have received much attention in recent years as a feedstock for producing renewable fuels...
Three cultivation regimes were tested in cold-adapted cultures of the green microalga Monoraphidium ...
Galdieria sulphuraria is an acidophilic microalga isolated in proximity of sulfuric ponds where pH i...
G. sulphuraria is a polyextremophilic microalga that can tolerate low pH, high temperature and high ...
Despite their large number and diversity, microalgae from only four genera are currently cultivated ...
Microalgae are photosynthetic microorganisms that can reach higher areal productivity than terrestri...
International audience●Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot sprin...
In the last years, the acidothermophilic red microalga Galdieria sulphuraria has been increasingly s...
Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot springs and calderas. It gro...
The extremophile red alga Galdieria sulphuraria was successfully grown immobilized in a twin-layer p...
Galdieria sulphuraria (G. sulphuraria ) is a eukaryotic, extremophilic, spherical and unicellular sp...
Abstract Background Microalgae are an important feedstock in industries. Currently, efforts are bein...
The extremophilic nature and metabolic flexibility of Galdieria spp. have major potential in several...
AbstractThe effects of autotrophic and mixotrophic growth on cell growth and lipid productivity of g...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
Microalgae have received much attention in recent years as a feedstock for producing renewable fuels...
Three cultivation regimes were tested in cold-adapted cultures of the green microalga Monoraphidium ...
Galdieria sulphuraria is an acidophilic microalga isolated in proximity of sulfuric ponds where pH i...
G. sulphuraria is a polyextremophilic microalga that can tolerate low pH, high temperature and high ...
Despite their large number and diversity, microalgae from only four genera are currently cultivated ...
Microalgae are photosynthetic microorganisms that can reach higher areal productivity than terrestri...
International audience●Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot sprin...
In the last years, the acidothermophilic red microalga Galdieria sulphuraria has been increasingly s...
Galdieria sulphuraria is a cosmopolitan microalga found in volcanic hot springs and calderas. It gro...
The extremophile red alga Galdieria sulphuraria was successfully grown immobilized in a twin-layer p...
Galdieria sulphuraria (G. sulphuraria ) is a eukaryotic, extremophilic, spherical and unicellular sp...
Abstract Background Microalgae are an important feedstock in industries. Currently, efforts are bein...
The extremophilic nature and metabolic flexibility of Galdieria spp. have major potential in several...
AbstractThe effects of autotrophic and mixotrophic growth on cell growth and lipid productivity of g...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
Microalgae have received much attention in recent years as a feedstock for producing renewable fuels...
Three cultivation regimes were tested in cold-adapted cultures of the green microalga Monoraphidium ...