Rheological properties of algae slurries for minimizing harvesting energy requirements in biofuel production
2012
Wileman, Angel | Ozkan, Altan | Berberoglu, Halil
Rheological properties of microalgae slurries were measured as a function of biomass concentration from 0.5 to 80kg/m³ for Nannochloris sp., Chlorella vulgaris, and Phaeodactylum tricornutum. At biomass concentrations smaller than 20kg/m³, all slurries displayed a Newtonian fluid behavior with less than 30% increase in the effective viscosity from that of the nutrient medium. However, at biomass concentrations larger than 60kg/m³, the slurries of the green algae, Nannochloris sp. and C. vulgaris, displayed a shear thinning non-Newtonian behavior with varying degrees of sensitivity to shear rate while that of the diatom, P. tricornutum, was still a Newtonian fluid up to 80kg/m³. Moreover, bioenergy pumping effectiveness showed significant deviation among different species in the non-Newtonian regime. Finally, dewatering the slurries to concentration factors larger than 80 did not further increase the total bioenergy harvest effectiveness.
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