Many studies have shown that algal growth is enhanced by organic carbon and algal mixotrophy is relevant for physiology and commercial cultivation. Most studies have tested only a single organic carbon concentration and report different growth parameters which hampers comparisons and improvements to algal cultivation methodology. This study compared growth of green algae Chlorella vulgaris and Chlamydomonas reinhardtii across a gradient of photoautotrophic-mixotrophic-heterotrophic culture conditions, with five acetate concentrations. Culture growth rates and biomass achieved were compared using different methods of biomass estimation. Both species grew faster and produced the most biomass when supplied with moderate acetate concentrations ...
Microalgae are increasingly recognised as valuable feedstock for novel product production and biotec...
BACKGROUND: A major obstacle to the application of microalgae for bio-fuel production is light inten...
Phytoplankton offer great potential as a bioenergy crop; however, technological advances are needed ...
Microalgae are photosynthetic microorganisms that can be cultivated at industrial scale to produce v...
Growth curves of four species of green microalgae have been compared under photoautotrophy, heterotr...
Development of the capacity to produce hydrogen economically from renewable energy resources is of c...
AbstractDevelopment of the capacity to produce hydrogen economically from renewable energy resources...
peer reviewedUp to now, scarce information has been available regarding major photobiochemical chang...
Lately, research on biodiesel production as a renewable and sustainable energy has become increasing...
Light is the essential energy source for autotrophically growing organisms, including microalgae. Bo...
Autotrophic microalgae can assimilate organic carbon sources for the growth of heterotrophy and mixo...
Algae play a vital role in many aquatic ecosystems. They are the major primary producers and form th...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Microalgae have a wide industrial potentia...
The green alga Chlamydomonas reinhardtii has the ability to photosynthetically produce molecular hyd...
Mixotrophic growth is one potential mode for mass culture of microalgae and cyanobacteria particular...
Microalgae are increasingly recognised as valuable feedstock for novel product production and biotec...
BACKGROUND: A major obstacle to the application of microalgae for bio-fuel production is light inten...
Phytoplankton offer great potential as a bioenergy crop; however, technological advances are needed ...
Microalgae are photosynthetic microorganisms that can be cultivated at industrial scale to produce v...
Growth curves of four species of green microalgae have been compared under photoautotrophy, heterotr...
Development of the capacity to produce hydrogen economically from renewable energy resources is of c...
AbstractDevelopment of the capacity to produce hydrogen economically from renewable energy resources...
peer reviewedUp to now, scarce information has been available regarding major photobiochemical chang...
Lately, research on biodiesel production as a renewable and sustainable energy has become increasing...
Light is the essential energy source for autotrophically growing organisms, including microalgae. Bo...
Autotrophic microalgae can assimilate organic carbon sources for the growth of heterotrophy and mixo...
Algae play a vital role in many aquatic ecosystems. They are the major primary producers and form th...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. Microalgae have a wide industrial potentia...
The green alga Chlamydomonas reinhardtii has the ability to photosynthetically produce molecular hyd...
Mixotrophic growth is one potential mode for mass culture of microalgae and cyanobacteria particular...
Microalgae are increasingly recognised as valuable feedstock for novel product production and biotec...
BACKGROUND: A major obstacle to the application of microalgae for bio-fuel production is light inten...
Phytoplankton offer great potential as a bioenergy crop; however, technological advances are needed ...