BIOREMEDIATION OF WASTEWATER OF NILE TILAPIA CULTIVATION BY MICROALGAE Spirulina platensis

Fuente: Universidad Nacional Autónoma de México

Resumen: The potential environmental impacts from intensive aquaculture have increased public concern about the sustainability of the activity. This study aimed to evaluate the production of algal biomass and removal rate of nitrogen compounds by Spirulina platensis in effluent of juvenile Nile tila...

Full description

Saved in:
Bibliographic Details
Main Authors: Alan Da Cruz Coelho, Anderson, Damasceno Maia, Hundson, Alves Da Silva, José William, Cavalcante Bezerra, João Henrique, Teixeira Moreira, Renato, Lobo Farias, Wladimir Ronald
Format: Artículo Técnico-Profesional
Language:Spanish
Published: Instituto de Ingeniería, UNAM 2014
Universidad Nacional Autónoma de México; Instituto de Ingeniería
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:Resumen: The potential environmental impacts from intensive aquaculture have increased public concern about the sustainability of the activity. This study aimed to evaluate the production of algal biomass and removal rate of nitrogen compounds by Spirulina platensis in effluent of juvenile Nile tilapia (Oreocrhomis niloticus). The experiment was conducted at the Biotechnology Centre Applied Aquaculture (CEBIAQUA) of the Department of Fisheries Engineering, Ceará Federal University. For the cultivation of S. platensis, initially the inoculum was cultivated in alternative chemical medium and later adapted to the effluent of Nile tilapia. After the full development of S. platensis, collection of the microalgae was performed by filtering the water 60 micrometers screens. We monitored the levels of ammonia, nitrate and nitrite during the trial period of 29 days. The results showed that the microalgae easily adapted and developed in the effluent of Nile tilapia and there was a significant bioremediation of effluent, reducing the concentrations of ammonia, nitrate and nitrite.Keywords: Spirulina platensis, Nile tilápia, bioremediation.