Abstract
This paper shows the infl uence of turbidity (in Nephelometric Turbidity Units NTU), chemical oxygen demand (COD) and aeration (CO2 supply) on the productivity and growth rate and lipid content of microalgae (a mixed culture predominantly composed of Chlorella vulgaris), using anaerobically digested vinasse as a culture medium. The microalgae can be cultivated in anaerobically digested vinasse, at turbidity and chemical oxygen demand of 690 NTU and 2.5 gCOD L-1, respectively, according to the modifi e d Gompertz model, and removal of turbidity by fi ltration did not infl uence the microalgae productivity (≈ 77 mg L1 d1). Furthermore, aeration increased the productivity up to 139 mg L1 d1, with a biomass dry weight of 2.7 g L-1. Finally, a maximum lipid content of 265 mg L-1 was obtained, while a nitrogen removal of 98% was recorded for all conditions. Thus, the combination of anaerobic digestion followed by the use of the digestate for the cultivation of microalgae may be an effi cient way to treat large quantities of this residue, in turn yielding large amounts of microalgae biomass, which can be transformed into fertilizer and biofuel.
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Serejo, M. L., Ruas, G., Braga, G. B., Paulo, P. L., & Boncz, M. (2021). Chlorella vulgaris growth on anaerobically digested sugarcane vinasse: Influenceofturbidity. Anais Da Academia Brasileira de Ciencias, 93(1). https://doi.org/10.1590/0001-3765202120190084
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