Alkaline flocculation holds great potential as a low-cost harvesting method for marine microalgae biomass production. Alkaline flocculation is induced by an increase in pH and is related to precipitation of calcium and magnesium salts. In this study, we used the diatom Phaeodactylum tricornutum as model organism to study alkaline flocculation of marine microalgae cultured in seawater medium. Flocculation started when pH was increased to 10 and flocculation efficiency reached 90% when pH was 10.5, which was consistent with precipitation modeling for brucite or Mg(OH)2. Compared to freshwater species, more magnesium is needed to achieve flocculation (> 7.5 mM). Zeta potential measurements suggest that brucite precipitation caused flocculation...
Concentrating algal cells by flocculation as a prelude to centrifugation could significantly reduce ...
© 2017 Elsevier B.V. Microalgal biomass has been used to produce biofuels, aquaculture feed, high-va...
Industrial-scale microalgae production will likely require large energy-intensive technologies for b...
Microalgae hold great potential as a feedstock for biofuels or bulk protein or treatment of wastewat...
Alkaline flocculation could be an attractive microalgae harvesting method, because it is low-cost, l...
Microalgae hold great potential as a feedstock for biofuels or bulk protein or treatment of wastewat...
Flocculation of microalgae is a promising low-cost strategy to harvest microalgae for bulk biomass p...
Flocculation at high pH has gained a lot of interest as an efficient harvest process for microalgae ...
Flocculation is a promising approach for reducing the cost of harvesting microalgae. Flocculation of...
Cost- and energy-efficient harvesting is an important bottleneck in low-value applications of micro-...
textHistorically, the presence of microalgae (algae hereafter) in natural waters has been viewed as ...
International audienceIn the context of climate change, the interest for sustainable sources to prod...
Flocculation is a promising approach for reducing the cost of harvesting microalgae. Flocculation of...
The goal of this study is to investigate the interplay between algal biology and flocculation to und...
Alkaline flocculation is a promising strategy for the concentration of microalgae for bulk biomass p...
Concentrating algal cells by flocculation as a prelude to centrifugation could significantly reduce ...
© 2017 Elsevier B.V. Microalgal biomass has been used to produce biofuels, aquaculture feed, high-va...
Industrial-scale microalgae production will likely require large energy-intensive technologies for b...
Microalgae hold great potential as a feedstock for biofuels or bulk protein or treatment of wastewat...
Alkaline flocculation could be an attractive microalgae harvesting method, because it is low-cost, l...
Microalgae hold great potential as a feedstock for biofuels or bulk protein or treatment of wastewat...
Flocculation of microalgae is a promising low-cost strategy to harvest microalgae for bulk biomass p...
Flocculation at high pH has gained a lot of interest as an efficient harvest process for microalgae ...
Flocculation is a promising approach for reducing the cost of harvesting microalgae. Flocculation of...
Cost- and energy-efficient harvesting is an important bottleneck in low-value applications of micro-...
textHistorically, the presence of microalgae (algae hereafter) in natural waters has been viewed as ...
International audienceIn the context of climate change, the interest for sustainable sources to prod...
Flocculation is a promising approach for reducing the cost of harvesting microalgae. Flocculation of...
The goal of this study is to investigate the interplay between algal biology and flocculation to und...
Alkaline flocculation is a promising strategy for the concentration of microalgae for bulk biomass p...
Concentrating algal cells by flocculation as a prelude to centrifugation could significantly reduce ...
© 2017 Elsevier B.V. Microalgal biomass has been used to produce biofuels, aquaculture feed, high-va...
Industrial-scale microalgae production will likely require large energy-intensive technologies for b...