Référence bibliographique
86
DANIEL N., et NAGESWARI P., (2017). Exogenous Probiotics on Biofloc based
Aquaculture: A Review. pp.88-107.
DE SCHRYVER., CRAB R., DEFOIRDTT., BOON V., VERSTRAETE W., 2008.
The basics of bio-flocs technology: The added value for aquaculture. pp.125-137.
DUPONCHELLE F., PANFILI J., (1998). Variations in age and size at maturity of
female Nile tilapia, Oreochromis niloticus, populations from man-made lakes of Cote
d'Ivoire.pp.453-465.
EKASARI J., ANGELA D., HADI S., BACHITAR T., (2014). The size of biofloc
determines the nutritional composition and the nitrogen recovery by aquaculture
animals Aquaculture .pp. 105–111.
EKASARI J., ZAIRIN JR., MUHAMMAD P., DIAN U., (2015). Biofloc-based
reproductive performance of Nile tilapia Oreochromis niloticus L. brood stock.
Aquaculture Research.pp.509-512.
EMERENCIANO M., EDUARDO L., BALLESTER C., RONALDO C., WILSON
W., (2011). Effect of biofloc technology (BFT) on the early postlarval stage of pink
shrimp Farfantepenaeus paulensis: Growth performance, floc composition and salinity
stress tolerance.pp.1-11.
EMERENCIANO M., CUZON G.,PAREDES A., (2013). Evaluation of biofloc
technology in pink shrimp Farfantepenaeus duorarum culture: Growth performance,
water quality, microorganisms profile and proximate analysis of biofloc Aquaculture
International.pp. 1381–1394.
EMERENCIANO M., GAXIOLA G., CUZO G., (2013). Biofloc Technology (BFT):
A Review for Aquaculture Application and Animal Food Industry Biomass Now -
Cultivation and Utilization.pp.1-97.
FAO (2018). le développement de l’aquaculture en algérie en collaboration avec la fao
bilan 2008-2016.pp.1-113.
FAO (2016). La situation mondiale des pêches et de l’aquaculture. Contribuer à la
sécurité alimentaire et à la nutrition de tous., (Fao).,pp.1-227.
86
DANIEL N., et NAGESWARI P., (2017). Exogenous Probiotics on Biofloc based
Aquaculture: A Review. pp.88-107.
DE SCHRYVER., CRAB R., DEFOIRDTT., BOON V., VERSTRAETE W., 2008.
The basics of bio-flocs technology: The added value for aquaculture. pp.125-137.
DUPONCHELLE F., PANFILI J., (1998). Variations in age and size at maturity of
female Nile tilapia, Oreochromis niloticus, populations from man-made lakes of Cote
d'Ivoire.pp.453-465.
EKASARI J., ANGELA D., HADI S., BACHITAR T., (2014). The size of biofloc
determines the nutritional composition and the nitrogen recovery by aquaculture
animals Aquaculture .pp. 105–111.
EKASARI J., ZAIRIN JR., MUHAMMAD P., DIAN U., (2015). Biofloc-based
reproductive performance of Nile tilapia Oreochromis niloticus L. brood stock.
Aquaculture Research.pp.509-512.
EMERENCIANO M., EDUARDO L., BALLESTER C., RONALDO C., WILSON
W., (2011). Effect of biofloc technology (BFT) on the early postlarval stage of pink
shrimp Farfantepenaeus paulensis: Growth performance, floc composition and salinity
stress tolerance.pp.1-11.
EMERENCIANO M., CUZON G.,PAREDES A., (2013). Evaluation of biofloc
technology in pink shrimp Farfantepenaeus duorarum culture: Growth performance,
water quality, microorganisms profile and proximate analysis of biofloc Aquaculture
International.pp. 1381–1394.
EMERENCIANO M., GAXIOLA G., CUZO G., (2013). Biofloc Technology (BFT):
A Review for Aquaculture Application and Animal Food Industry Biomass Now -
Cultivation and Utilization.pp.1-97.
FAO (2018). le développement de l’aquaculture en algérie en collaboration avec la fao
bilan 2008-2016.pp.1-113.
FAO (2016). La situation mondiale des pêches et de l’aquaculture. Contribuer à la
sécurité alimentaire et à la nutrition de tous., (Fao).,pp.1-227.
