Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques

ABSTRACT: The harvesting process is a current challenge for the commercial production of microalgae because the biomass is diluted in the culture medium. Several methods have been proposed to harvest microalgae cells, but there is not a consensus about the optimum method for such application. Herein, the methods based on sedimentation, flocculation, and centrifugation were evaluated on the recovery of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium. C. sorokiniana BR001 was cultivated using a low-nitrogen medium to trigger the accumulation of neutral lipids and neutral carbohydrates. The biomass of C. sorokiniana BR001 cultivated in a low-nitrogen medium showed a total lipid content of 1.9 times higher (23.8 ± 4.5%) when compared to the biomass produced in a high-nitrogen medium (12.3 ± 1.2%). In addition, the biomass of the BR001 strain cultivated in a low-nitrogen medium showed a high content of neutral carbohydrates (52.1 ± 1.5%). The natural sedimentation-based process was evaluated using a sedimentation column, and it was concluded that C. sorokiniana BR001 is a non-flocculent strain. Therefore, it was evaluated the effect of different concentrations of ferric sulfate (0.005 to 1 g L-1) or aluminum sulfate (0.025 to 0.83 g L-1) on the flocculation process of C. sorokiniana BR001, but high doses of flocculant agents were required for an efficient harvest of biomass. It was evaluated the centrifugation at low speed (300 to 3,000 g) as well, and it was possible to conclude that this process was the most adequate to harvest the non-flocculent strain C. sorokiniana BR001.

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Main Authors: Lira,Rafael de Araújo, Corrêdo,Lucas de Paula, Soares,Jimmy, Rocha,Mariana Machado, Matos,Antonio Teixeira de, Coimbra,Jane Selia dos Reis, Martins,Marcio Arêdes
Format: Digital revista
Language:English
Published: Universidade Federal de Santa Maria 2022
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782022000100401
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spelling oai:scielo:S0103-847820220001004012021-07-23Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniquesLira,Rafael de AraújoCorrêdo,Lucas de PaulaSoares,JimmyRocha,Mariana MachadoMatos,Antonio Teixeira deCoimbra,Jane Selia dos ReisMartins,Marcio Arêdes microalgae ferric sulfate aluminum sulfate sedimentation centrifugation ABSTRACT: The harvesting process is a current challenge for the commercial production of microalgae because the biomass is diluted in the culture medium. Several methods have been proposed to harvest microalgae cells, but there is not a consensus about the optimum method for such application. Herein, the methods based on sedimentation, flocculation, and centrifugation were evaluated on the recovery of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium. C. sorokiniana BR001 was cultivated using a low-nitrogen medium to trigger the accumulation of neutral lipids and neutral carbohydrates. The biomass of C. sorokiniana BR001 cultivated in a low-nitrogen medium showed a total lipid content of 1.9 times higher (23.8 ± 4.5%) when compared to the biomass produced in a high-nitrogen medium (12.3 ± 1.2%). In addition, the biomass of the BR001 strain cultivated in a low-nitrogen medium showed a high content of neutral carbohydrates (52.1 ± 1.5%). The natural sedimentation-based process was evaluated using a sedimentation column, and it was concluded that C. sorokiniana BR001 is a non-flocculent strain. Therefore, it was evaluated the effect of different concentrations of ferric sulfate (0.005 to 1 g L-1) or aluminum sulfate (0.025 to 0.83 g L-1) on the flocculation process of C. sorokiniana BR001, but high doses of flocculant agents were required for an efficient harvest of biomass. It was evaluated the centrifugation at low speed (300 to 3,000 g) as well, and it was possible to conclude that this process was the most adequate to harvest the non-flocculent strain C. sorokiniana BR001.info:eu-repo/semantics/openAccessUniversidade Federal de Santa MariaCiência Rural v.52 n.1 20222022-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782022000100401en10.1590/0103-8478cr20200293
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country Brasil
countrycode BR
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libraryname SciELO
language English
format Digital
author Lira,Rafael de Araújo
Corrêdo,Lucas de Paula
Soares,Jimmy
Rocha,Mariana Machado
Matos,Antonio Teixeira de
Coimbra,Jane Selia dos Reis
Martins,Marcio Arêdes
spellingShingle Lira,Rafael de Araújo
Corrêdo,Lucas de Paula
Soares,Jimmy
Rocha,Mariana Machado
Matos,Antonio Teixeira de
Coimbra,Jane Selia dos Reis
Martins,Marcio Arêdes
Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
author_facet Lira,Rafael de Araújo
Corrêdo,Lucas de Paula
Soares,Jimmy
Rocha,Mariana Machado
Matos,Antonio Teixeira de
Coimbra,Jane Selia dos Reis
Martins,Marcio Arêdes
author_sort Lira,Rafael de Araújo
title Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
title_short Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
title_full Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
title_fullStr Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
title_full_unstemmed Harvesting of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium using different techniques
title_sort harvesting of chlorella sorokiniana br001 cultivated in a low-nitrogen medium using different techniques
description ABSTRACT: The harvesting process is a current challenge for the commercial production of microalgae because the biomass is diluted in the culture medium. Several methods have been proposed to harvest microalgae cells, but there is not a consensus about the optimum method for such application. Herein, the methods based on sedimentation, flocculation, and centrifugation were evaluated on the recovery of Chlorella sorokiniana BR001 cultivated in a low-nitrogen medium. C. sorokiniana BR001 was cultivated using a low-nitrogen medium to trigger the accumulation of neutral lipids and neutral carbohydrates. The biomass of C. sorokiniana BR001 cultivated in a low-nitrogen medium showed a total lipid content of 1.9 times higher (23.8 ± 4.5%) when compared to the biomass produced in a high-nitrogen medium (12.3 ± 1.2%). In addition, the biomass of the BR001 strain cultivated in a low-nitrogen medium showed a high content of neutral carbohydrates (52.1 ± 1.5%). The natural sedimentation-based process was evaluated using a sedimentation column, and it was concluded that C. sorokiniana BR001 is a non-flocculent strain. Therefore, it was evaluated the effect of different concentrations of ferric sulfate (0.005 to 1 g L-1) or aluminum sulfate (0.025 to 0.83 g L-1) on the flocculation process of C. sorokiniana BR001, but high doses of flocculant agents were required for an efficient harvest of biomass. It was evaluated the centrifugation at low speed (300 to 3,000 g) as well, and it was possible to conclude that this process was the most adequate to harvest the non-flocculent strain C. sorokiniana BR001.
publisher Universidade Federal de Santa Maria
publishDate 2022
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-84782022000100401
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