Growth kinetics and purifying performance of A. Platensis in stirring-free culture based on brewery effluent's supernatant

Author:

Liady Mouhamadou Nourou Dine1ORCID,Adande Richard1,Virgile Akowanou Onésime Akuemaho2,Adjahouinou Dogbè Clément3,Cécilia Ahondokpè4,Goussanou Baruc Kpèhouénou2,Zouhir Fouad5,Kouadio Louis Amani6,Aïna Martin Pépin2,Fiogbe Emile Didier1

Affiliation:

1. a Faculté des Sciences et Techniques, Laboratoire de Recherche sur les Zones Humide (LRZH), Université d'Abomey-Calavi, Cotonou BP 526, Bénin

2. b Laboratoire des Sciences et Techniques de l'Eau et de l'Environnement, Université d'Abomey-Calavi, Institut National de l'Eau, Cotonou 01 BP 2009, Bénin

3. c École d'Aquaculture, Université Nationale d'Agriculture, Porto Novo, République Du Bénin

4. d Laboratoire National des Stupéfiants et Toxicologie, Centre Béninois de la Recherche Scientifique et de l'innovation, Cotonou, République Du Bénin

5. e Département Sciences et Gestion de l'Environnement, Unité Assainissement et Environnement, Université de Liège, Avenue de Longwy, Arlon 185. BE-6700, Belgique

6. f Centre for Applied Climate Sciences, University of Southern Queensland, West Street, Toowoomba, Queensland, Australia

Abstract

Abstract Due to costs of setting up and operating electrical stirring systems to keep algae in suspension and exposed to light, cultivation of monospecific algae is poorly expanded in developing countries. However, some algal species, such as Arthrospira platensis, are equipped with gaseous vesicles that allow them to stay afloat and increase their exposure to light. In this study, we investigated in an unstirred outdoor environment, its growth kinetic and purifying performance in a brewery effluent-based media. Batch cultures were carried out in three experimental treatments and evolution of physicochemical and growth parameters were monitored. Then its contribution to depollution was determined. Results show that optimal conditions for producing A. platensis include the culture tank transparency, the effluent dilution (i.e. 10%), and the culture media amendment with sodium bicarbonate and sodium nitrate. The average productivity recorded reached 0.55 g DW·L−1·d−1 during the exponential growth phase, while preserving culture from contamination. COD and total nitrogen concentrations were reduced to 32.5 and 64.91%. Such results open up prospects for low-cost production of certain algae, in transparent and relatively high barrels, thus breaking the classic barriers related to shallow basin depth and mechanical agitation traditionally considered as critical to the success of algal production.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference10 articles.

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4. Valorisation du surnageant d'effluents de brasserie dans la production de planctons pour la pisciculture : une alternative pour la protection de l'environnement dans les pays du Sud;Biotechnologie, Agronomie, Societe et Environnement,2020

5. Pretreatment of brewery effluent to cultivate Spirulina sp. for nutrients removal and biomass production;Water Science & Technology,2017

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