Effluent of a Polyculture System (Tilapias and Shrimps): Assessment by Mass Balance of Nitrogen and Phosphorus
- 1 Center of Water Resources, Fisheries Institute, S?o Paulo, Brazil
- 2 Center of Water Resources, Fisheries Institute, S?o Paulo, Brazil
- 3 Center of Water Resources, Fisheries Institute, S?o Paulo, Brazil
- 4 Aquaculture Center, Paulista State University, S?o Paulo, Brazil
- 5 Federal University of Paraná, Curitiba, Brazil
- 6 Center of Water Resources, Fisheries Institute, S?o Paulo, Brazil
Abstract
From the estimation of the mass balance model, which can also be classified as “black box” model, it is possible to infer the impact of management on the system considered. This study aimed to evaluate water pollution generated by wastewater from a polyculture system of tilapia and shrimp and discuss the management employee and their relation to the quality of the effluent released. It used a pond measuring 1500 m 2 , average depth 1.6 meters, where 12 cages of 1 m 3 populated with tilapia juveniles were installed 33 days after the shrimps’ population. The tilapia juveniles were distributed in densities from 200 to 400 fish per cubic meter, reaching the density of 2.4 fish per square meter within the total pond area. Shrimp post-larvae were released outside the cages within the pond area in a density of 3.3 organisms per square meter. Total density considering fish and shrimps was of 5.7 organisms per square meter in the pond area. Water samples were taken weekly in affluent and effluent of the pond (January-August/2009). The mass balance model was calculated from the difference between the estimated load for the output and input of the pond. The average flow rate was 4.46 L/s. The average loads nitrogen was 0.072 Kg/day (affluent) and 0.179 Kg/day (effluent) and phosphorus 0.0136 Kg/day (affluent) and 0.031 Kg/day (effluent). The mass balance resulted in mean values of 0.11 ± 0.06 Kg/day for total nitrogen and 0.017 ± 0.010 Kg/day for total phosphorus indicating that the system exported nutrients. The use of Best Management Practices (BMP) likes better feed and water management as a way to minimize nutrient export.
- Scorvo-Filho, J.D. (2007) Panorama da Aquicultura Nacional. ftp://ftp.sp.gov.br/ftppesca/panorama_aquicultura.pdf
- Valenti, W.C. (2000) Aquaculture for Sustainable Development. In: Valenti, W.C., Poli, C.R., Pereira, J.A. and Borghetti, J.R., Eds., Aquicultura do Brasil: Bases para um Desenvolvimento Sustentavel, CNPq/MCT, Brasilia, 17-32.
- Henry-Silva, G.G. and Camargo, A.F.M. (2008) Tratamento de Efluentes de Carcinicultura por Macrofitas Aquaticas Flutuantes. Revista Brasileira de Zootecnia, 37, 181-188. http://dx.doi.org/10.1590/S1516-35982008000200002
- Avnimelech, Y. and Ritvo, G. (2003) Shrimp and Fish Pond Soils: Processes and Management. Aquaculture, 220, 549-567. http://dx.doi.org/10.1016/S0044-8486(02)00641-5
- Boyd, C.E. (2004) Feeding Affects Pond Water Quality. Global Aquaculture Advocate, 29-30.
- Brasil. (2005) Resolucao CONAMA no. 357, de marco de 2005. Diario Oficial da Republica Federativa do Brasil, Brasilia, 23.
- Salah, A.M., Fields, P.J. and Miller, A.W. (2005) Simulating Uncertainty in Mass Balance Modeling for Freshwater Reservoirs, Case Study: Deer Creek Reservoir, Utah, USA. Proceedings of the 37th Winter Simulation Conference of the Association for Computing Machine, Orlando, 4-7 December 2005, 2385-2394.
- Valderrama, J.C. (1981) The Simultaneous Analysis of Total Nitrogen and Total Phosphorus in Natural Waters. Marine Chemistry, 10, 109-122. http://dx.doi.org/10.1016/0304-4203(81)90027-X
- Nusch, E.A. (1980) Comparison of Different Methods for Chlorophyll and Phaeopigment Determination. Archiv für Hydrobiologie-Beiheft Ergebnisse der Limnologie, 14, 14-36.
- Pereira, J.S. (2008) Avaliacao do Impacto do Efluente de Piscicultura sobre o Corpo Hidrico Receptor. Master Dissertation, Fisheries Institute, Sao Paulo.
- Mercante, C.T.J., Vaz-dos-Santos, A.M., Moraes, M.A.B., Pereira, J.S. and Lombardi, J.V. (2014) Bullfrog (Lithobates catesbeianus) Farming System: Water Quality and Environmental Changes. Acta Limnologica Brasiliensia. (in Press)
- Verdegem, M.C.J. (2013) Nutrient Discharge from Aquaculture Operations in Function of System Design and Production Environment. Reviews in Aquaculture, 5, 158-171. http://dx.doi.org/10.1111/raq.12011
- Mainardes-Pinto, C.S.R. and Mercante, C.T.J. (2003) Avaliacao de Variaveis Limnologicas e suas Relacoes com uma Floracao de Euglenaceae Pigmentada em Viveiro Povoado com Tilapia do Nilo (Oreochromis niloticus Linnaeus), Sao Paulo, Brasil. Acta Scientiarum Biological Sciences, 25, 323-328.