Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic versatility and flexibility but are currently underexploited in the biotechnological manufacturing of known plant-derived compounds, novel high-value biomolecules or enriched biomass. Highly efficient production of microalgal biomass without the need for light is now feasible in inexpensive, well-defined mineral medium, typically supplemented with glucose. Cell densities of more than 100 g l(-1) cell dry weight have been achieved with Chlorella, Crypthecodinium and Galdieria species while controlling the addition of organic sources of carbon and energy in fedbatch mode. The ability of microalgae to adapt their metabolism to varying culture c...
Microalgae has a great potential to produce biofuels and bioproduct but the cost is still too high m...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
Many phototrophic microorganisms contain large quantities of high-value products such as n-3 polyuns...
Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic...
Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic...
Industrial scale-up of microalgal cultures is often a protracted step prone to culture collapse and ...
Microalgae are a great source of many highly valuable products such as polyunsaturated fatty acids, ...
Microalgae are sustainable feedstock for healthy food and feed, organic drugs, ecological polymers, ...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
This chapter discusses the cultivation of microalgae under heterotrophic and mixotrophic conditions ...
High cell density cultivation of microalgae via heterotrophic growth mechanism could effectively add...
Although production of biodiesels from microalgae is proved to be technically feasible, a commercial...
Microalgae are unicellular, eukaryotic organisms which possess unique qualities of replication, prod...
Despite the increasing interest in microalgal biomass and its high-value compounds, the number of pr...
Lately, research on biodiesel production as a renewable and sustainable energy has become increasing...
Microalgae has a great potential to produce biofuels and bioproduct but the cost is still too high m...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
Many phototrophic microorganisms contain large quantities of high-value products such as n-3 polyuns...
Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic...
Microalgae of numerous heterotrophic genera (obligate or facultative) exhibit considerable metabolic...
Industrial scale-up of microalgal cultures is often a protracted step prone to culture collapse and ...
Microalgae are a great source of many highly valuable products such as polyunsaturated fatty acids, ...
Microalgae are sustainable feedstock for healthy food and feed, organic drugs, ecological polymers, ...
A major disadvantage of microalgal cultivation is limited biomass yields due to the autotrophic life...
This chapter discusses the cultivation of microalgae under heterotrophic and mixotrophic conditions ...
High cell density cultivation of microalgae via heterotrophic growth mechanism could effectively add...
Although production of biodiesels from microalgae is proved to be technically feasible, a commercial...
Microalgae are unicellular, eukaryotic organisms which possess unique qualities of replication, prod...
Despite the increasing interest in microalgal biomass and its high-value compounds, the number of pr...
Lately, research on biodiesel production as a renewable and sustainable energy has become increasing...
Microalgae has a great potential to produce biofuels and bioproduct but the cost is still too high m...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
Many phototrophic microorganisms contain large quantities of high-value products such as n-3 polyuns...