Cultivation of Chlorella vulgaris in anaerobically digested gelatin industry wastewater

Author:

Blanco G. C.1,Stablein M. J.2,Tommaso G.1

Affiliation:

1. Laboratory of Environmental Biotechnology, Department of Food Engineering, University of São Paulo, 225, Duque de Caxias Norte, Pirassununga, São Paulo 13635-900, Brazil

2. Department of Agricultural and Biological Engineering, University of Illinois at Urbana-Champaign, 1304 W Pennsylvania Avenue, Urbana, IL 61801, USA

Abstract

Abstract This work aimed to study the effect of using anaerobically digested gelatin industry wastewater as a culture medium for the cultivation of Chlorella vulgaris microalgae in bubble column photobioreactors (PBRs). Batch experiments were carried out to determine the growth kinetics by inoculating microalgae in wastewater prepared with different dilutions and supplemented with Bold's Basal Medium (BBM). From the values of the saturation constants (KS = 50.25 mgN-NH4+·L−1) and substrate inhibition (KI = 28.12 mgN-NH4+·L−1) obtained in the adjustment to the Andrews kinetic model (R2 = 0.817), the PBRs achieved specific maximum growth rates (μmax) of 0.343 d−1, biomass productivity of 0.141 g·L−1·d−1, lipid content of 12.45%, lipid productivity of 17.63 mg·L−1·d−1 and instantaneous ammoniacal nitrogen consumption rates of 20.06 and 14.22 mg·L−1·d−1. The addition of wastewater to the culture medium provided an increase in biomass productivity of 57.45% in relation to the negative control. The results obtained demonstrate the high efficiency of C. vulgaris in the removal of nitrogenous compounds and the potential of using anaerobically digested gelatin industry wastewater in the production of microalgae biomass.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

IWA Publishing

Subject

Water Science and Technology

Reference25 articles.

1. Free ammonia inhibition of algal photosynthesis in intensive cultures;Applied and Environmental Microbiology,1982

2. Performance of Chlorella vulgaris for the removal of ammonia-nitrogen from wastewater;Environmental Engineering Research,2013

3. Kinetic and stoichiometric relationships of the energy and carbon metabolism in the culture of microalgae;Biotechnology,2004

4. Kinetic modelling of microalgae cultivation for wastewater treatment and carbon dioxide sequestration;Algal Research,2018

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