Flocculation of microalgae is a promising technique to reduce the costs and energy required for harvesting microalgae. Harvesting marine microalgae requires suitable flocculants to induce the flocculation under marine conditions. This study demonstrates that cationic polymeric flocculants can be used to harvest marine microalgae. Different organic flocculants were tested to flocculate Phaeodactylum tricornutum and Neochloris oleoabundans grown under marine conditions. Addition of 10 ppm of the commercial available flocculants Zetag 7557 and Synthofloc 5080H to P. tricornutum showed a recovery of, respectively, 98% ± 2.0 and 94% ± 2.9 after flocculation followed by 2 h sedimentation. Using the same flocculants and dosage for harvesting N. ol...
The large-scale production of microalgae for biofuels is still facing several major challenges to be...
<p>A method to flocculate algal cultures of <i>Chlamydomonas reinhardtii</i> using four different in...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...
Flocculation of microalgae is a promising technique to reduce the costs and energy required for harv...
This study addresses the challenge of microalgae harvesting through the development of flocculants. ...
A mechanistic mathematical model was developed to predict the performance of cationic polymers for f...
A mechanistic study was performed to evaluate the effect of salinity on cationic polymeric flocculan...
Abstract A mechanistic study was performed to evaluate the effect of salinity on cationic polymeric ...
This study aims to elucidate the mechanisms governing the harvesting efficiency of Chlorella vulgari...
Due to their small size and low concentration in the culture medium, cost-efficient harvesting of mi...
Microbial flocculation is investigated as a separation technique for harvesting marine microalgae fo...
Twenty-five natural and synthetic cationic polymers of different molecular weights and charge densit...
Flocculation of marine microalgae is challenging because of the high ionic strength of the culture m...
Industrially, harvesting of the microalgal biomass is a techno-economic tailback, which essentially ...
The production of biodiesel from fast growing and lipid containing marine microalgal species is sust...
The large-scale production of microalgae for biofuels is still facing several major challenges to be...
<p>A method to flocculate algal cultures of <i>Chlamydomonas reinhardtii</i> using four different in...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...
Flocculation of microalgae is a promising technique to reduce the costs and energy required for harv...
This study addresses the challenge of microalgae harvesting through the development of flocculants. ...
A mechanistic mathematical model was developed to predict the performance of cationic polymers for f...
A mechanistic study was performed to evaluate the effect of salinity on cationic polymeric flocculan...
Abstract A mechanistic study was performed to evaluate the effect of salinity on cationic polymeric ...
This study aims to elucidate the mechanisms governing the harvesting efficiency of Chlorella vulgari...
Due to their small size and low concentration in the culture medium, cost-efficient harvesting of mi...
Microbial flocculation is investigated as a separation technique for harvesting marine microalgae fo...
Twenty-five natural and synthetic cationic polymers of different molecular weights and charge densit...
Flocculation of marine microalgae is challenging because of the high ionic strength of the culture m...
Industrially, harvesting of the microalgal biomass is a techno-economic tailback, which essentially ...
The production of biodiesel from fast growing and lipid containing marine microalgal species is sust...
The large-scale production of microalgae for biofuels is still facing several major challenges to be...
<p>A method to flocculate algal cultures of <i>Chlamydomonas reinhardtii</i> using four different in...
The global demand for biomass for food, feed, biofuels, and chemical production is expected to incre...