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Performance Evaluation of Foxtail Amaranth (Amaranthus gangeticus) and Gift Tilapia Grown in a Recirculating Aquaponics System


Affiliations
1 Department of Aquacultural Engineering, College of Fisheries Engineering, Tamil Nadu Fisheries University, Nagapattinam (T.N.), India
2 Department of Basic Engineering, College of Fisheries Engineering, Tamil Nadu Fisheries University, Nagapattinam (T.N.), India
     

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This paper deals with the development and performance evaluation of aquaponics system. In the present study GIFT tilapia fingerlings and foxtail amaranth (Amaranthus gangeticus) seeds were procured and grown in fish culture tank and plant bed, respectively in aquaponics unit. This study demonstrates and evaluated the growth of GIFT tilapia and foxtail amaranth (Amaranthus gangeticus) grown in aquaponics system and normal culture system. The fish fingerlings of average weight 0.70 g were procured from a fish farmer. The fish weight was recorded in aquaponics and glass tank and was found to be 83.20 and 78.10 g, respectively after 160 days of culture. Plant height observed in aquaponics system and normal culture system which was recorded as 18.10 cm and 20.20 cm, respectively. The recirculation flow rate in aquaponics was maintained 0.43 L/throughout the culture and the average biofiltration efficacy was found to 23 per cent. Fish were fed at the rate of 12 per cent of body weight with commercially available feed.

Keywords

Aquaponics System, GIFT Tilapia, Foxtail Amaranth (Amaranthus gangeticus), Recirculation Flow Rate.
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  • APHA (1998). Standard methods for the examination of water and wastewater, American Public Health Association, APHA, AWWA, WPFC, 19th edition, New York.
  • FAO (2012). The State of the World Fisheries and Aquaculture 2012. Rome: FAO.
  • Francis, C., Lieblein, G., Gliessman, S., Breland, T.A., Creamer, N., Harwood, R., Salomonsson, L., Helenius, J., Rickerl, D., Salvador, R., Wiedenhoeft, M., Simmons, S., Allen, P., Altieri, M., Flora, C. and Poincelot, R. (2003). Agroecology: The ecology of food systems. J. Sustain. Agric., 22 : 99–118.
  • Love, D.C., Fry, J.P., Genello, L., Elizabeth, S., Adam, J.F., Frederick, X. Li. and Semmens, K. (2014). An international survey of aquaponics practitioners. PLoS One, 9 (7): e102662.
  • Martins, C.I.M., Pistrin, M.G., Ende, S.S.W., Eding, E.H. and Verreth, J.A.J. (2009a). The accumulation of substances in recirculating aquaculture systems (RAS) affects embryonic and larval development in common carp Cyprinus carpio, Aquaculture, 291: 65–73.
  • Martins, C.I.M., Ochola, D., Ende, S.S.W., Eding, E.H. and Verreth, J.A.J. (2009b). Is growth retardation present in Nile tilapia Oreochromis niloticus cultured in low water exchange recirculating aquaculture systems? Aquaculture, 298: 43–50.
  • Penry, D.L. and Jumars, P.A. (1986). Chemical reactor analysis and optimal digestion. Bio-Sci., 36 : 310–315.
  • Rakocy, J.E., Bailey, D.S., Shultz, K.A. and Cole, W.M. (2006). Evaluation of a commercial-scale aquaponic unit for the production of tilapia and lettuce. In : Proceedings of the 4th International Symposium on Tilapia in Aquaculture, Orlando, FL, USA, 9–12 November 1997; Fitzsimmons, K., Ed.; Food Products Press: New York, NY, USA, 2006; pp. 357–372.
  • Rakocy, J.E. (2012). Aquaponics e integrating fish and plant culture. In : Tidwell, J.H. (Ed.), Aquaculture production systems. John Wiley and Sons, Inc., Iowa, USA, p. 343.
  • Schneider, O., Blancheton, J.P., Varadi, L., Eding, E.H. and Verreth, J.A.J. (2006). Cost price and production strategies in European recirculation systems, linking tradition and technology highest quality for the consumer. Firenze, Italy, WAS.
  • Timmons, M.B., Ebeling, J.M., Wheaton, F.W., Sumerfelt, S.T. and Vinci, B.J. (2002). Recirculating aquaculture systems, 2nd Ed. Northeastern Aquaculture Center Publ. No. 01 002. Cayuga Aqua Ventures.
  • Tyson, R.V., Simonne, E.H., Treadwell, D.D., White, J.M. and Simonne, A. (2008). Reconciling pH for ammonia biofiltration and cucumber yield in a recirculating aquaponic system with perlite biofilters. Hort Sci., 43:719–724.
  • Vermeulen, T. and Kamstra, A. (2013). The need for systems design for robust aquaponic systems in the urban environment. Acta Hort., 1004 : 71-77.

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  • Performance Evaluation of Foxtail Amaranth (Amaranthus gangeticus) and Gift Tilapia Grown in a Recirculating Aquaponics System

Abstract Views: 220  |  PDF Views: 0

Authors

Mohammad Tanveer
Department of Aquacultural Engineering, College of Fisheries Engineering, Tamil Nadu Fisheries University, Nagapattinam (T.N.), India
M. Sivakumar
Department of Basic Engineering, College of Fisheries Engineering, Tamil Nadu Fisheries University, Nagapattinam (T.N.), India

Abstract


This paper deals with the development and performance evaluation of aquaponics system. In the present study GIFT tilapia fingerlings and foxtail amaranth (Amaranthus gangeticus) seeds were procured and grown in fish culture tank and plant bed, respectively in aquaponics unit. This study demonstrates and evaluated the growth of GIFT tilapia and foxtail amaranth (Amaranthus gangeticus) grown in aquaponics system and normal culture system. The fish fingerlings of average weight 0.70 g were procured from a fish farmer. The fish weight was recorded in aquaponics and glass tank and was found to be 83.20 and 78.10 g, respectively after 160 days of culture. Plant height observed in aquaponics system and normal culture system which was recorded as 18.10 cm and 20.20 cm, respectively. The recirculation flow rate in aquaponics was maintained 0.43 L/throughout the culture and the average biofiltration efficacy was found to 23 per cent. Fish were fed at the rate of 12 per cent of body weight with commercially available feed.

Keywords


Aquaponics System, GIFT Tilapia, Foxtail Amaranth (Amaranthus gangeticus), Recirculation Flow Rate.

References