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Abakari, G., Luo, G., & Kombat, E. O. (2021a). Dynamics of nitrogenous compounds and their
control in biofloc technology (BFT) systems: A review. Aquaculture and Fisheries, 6(5), 441-447.
Abakari, G., Luo, G., Kombat, E. O., & Alhassan, E. H. (2021b). Supplemental carbon sources
applied in biofloc technology aquaculture systems: types, effects and future research. Reviews in
Aquaculture, 13(3), 1193-1222.
Adineh, H., Naderi, M., Hamidi, M. K., & Harsij, M. (2019). Biofloc technology improves growth,
innate immune responses, oxidative status, and resistance to acute stress in common carp (Cyprinus
carpio) under high stocking density. Fish Shellfish Immunol, 95, 440-448.
Aebi, H. (1984). [13] Catalase in vitro. In Methods in Enzymology (Vol. 105, pp. 121-126). Academic
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Ahmad, I., Rani, A. B., Verma, A., & Maqsood, M. (2017). Biofloc technology: an emerging avenue
in aquatic animal healthcare and nutrition. Aquaculture International, 25(3), 1215-1226.
https://doi.org/10.1007/s10499-016-0108-8
Alayse, J. P. (1981). Mise au point d'un circuit ferme en vue de permettre l'experimentation sur des
larves et des juveniles de poissons marins. Suivi biologique et chimique de l'evolution du milieu.
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Allameh, S., Noaman, V., & Nahavandi, R. (2017). Effects of probiotic bacteria on fish performance.
Advanced Techniques in Clinical Microbiology, 1(2), 11.
Alvarenga, R. É., de Sales, S. C. M., de Brito , S. T., Santos, C. R., Corrêa, R. D. S., de Oliveira
Alves, G. F., Manduca, L. G., & Turra, E. M. (2017). Effects of biofloc technology on reproduction
and ovarian recrudescence in Nile tilapia. Aquaculture Research, 48(12), 5965-5972.
https://doi.org/https://doi.org/10.1111/are.13420
Amoussou, T. O., Toguyeni, A., Toko, I. I., Chikou, A., & Karim, I. Y. A. (2016). Caractéristiques
biologiques et zootechniques des tilapias africains Oreochromis niloticus (Linnaeus, 1758) et
Sarotherodon melanotheron Rüppell, 1852: une revue. International Journal of Biological and Chemical
Sciences, 10(4), 1869-1887.
Anand, P. S. S., Kohli, M. P. S., Kumar, S., Sundaray, J. K., Roy, S. D., Venkateshwarlu, G., Sinha,
A., & Pailan, G. H. (2014). Effect of dietary supplementation of biofloc on growth performance and
digestive enzyme activities in Penaeus monodon. Aquaculture, 418-419, 108-115.
https://doi.org/10.1016/j.aquaculture.2013.09.051
Anasori, N., Farahnak, A., Golmohamadi, T., Eshraghian, M., & Molaei Rad, M. (2015).
Comparative assay of protease enzyme activity in protoscolices (Hydatid cyst) and liver tissues.
Archives of Advances in Biosciences, 6(1). https://doi.org/10.22037/jps.v6i1.8116
Ardjosoediro, I., & Ramnarine, I. W. (2002). The influence of turbidity on growth, feed conversion
and survivorship of the Jamaica red tilapia strain. Aquaculture, 212(1), 159-165.
https://doi.org/https://doi.org/10.1016/S0044-8486(01)00881-X
Avnimelech, Y. (1999). Carbon/nitrogen ratio as a control element in aquaculture systems. Aquaculture,
176(3), 227-235. https://doi.org/https://doi.org/10.1016/S0044-8486(99)00085-X
Avnimelech, Y. (2007). Feeding with microbial flocs by tilapia in minimal discharge bio-flocs
technology ponds. Aquaculture, 264(1), 140-147. https://doi.org/10.1016/j.aquaculture.2006.11.025
134
Abakari, G., Luo, G., & Kombat, E. O. (2021a). Dynamics of nitrogenous compounds and their
control in biofloc technology (BFT) systems: A review. Aquaculture and Fisheries, 6(5), 441-447.
Abakari, G., Luo, G., Kombat, E. O., & Alhassan, E. H. (2021b). Supplemental carbon sources
applied in biofloc technology aquaculture systems: types, effects and future research. Reviews in
Aquaculture, 13(3), 1193-1222.
Adineh, H., Naderi, M., Hamidi, M. K., & Harsij, M. (2019). Biofloc technology improves growth,
innate immune responses, oxidative status, and resistance to acute stress in common carp (Cyprinus
carpio) under high stocking density. Fish Shellfish Immunol, 95, 440-448.
Aebi, H. (1984). [13] Catalase in vitro. In Methods in Enzymology (Vol. 105, pp. 121-126). Academic
Press. https://doi.org/10.1016/S0076-6879(84)05016-3
Ahmad, I., Rani, A. B., Verma, A., & Maqsood, M. (2017). Biofloc technology: an emerging avenue
in aquatic animal healthcare and nutrition. Aquaculture International, 25(3), 1215-1226.
https://doi.org/10.1007/s10499-016-0108-8
Alayse, J. P. (1981). Mise au point d'un circuit ferme en vue de permettre l'experimentation sur des
larves et des juveniles de poissons marins. Suivi biologique et chimique de l'evolution du milieu.
Aquaculture, 23(1), 219-230. https://doi.org/https://doi.org/10.1016/0044-8486(81)90016-8
Allameh, S., Noaman, V., & Nahavandi, R. (2017). Effects of probiotic bacteria on fish performance.
Advanced Techniques in Clinical Microbiology, 1(2), 11.
Alvarenga, R. É., de Sales, S. C. M., de Brito , S. T., Santos, C. R., Corrêa, R. D. S., de Oliveira
Alves, G. F., Manduca, L. G., & Turra, E. M. (2017). Effects of biofloc technology on reproduction
and ovarian recrudescence in Nile tilapia. Aquaculture Research, 48(12), 5965-5972.
https://doi.org/https://doi.org/10.1111/are.13420
Amoussou, T. O., Toguyeni, A., Toko, I. I., Chikou, A., & Karim, I. Y. A. (2016). Caractéristiques
biologiques et zootechniques des tilapias africains Oreochromis niloticus (Linnaeus, 1758) et
Sarotherodon melanotheron Rüppell, 1852: une revue. International Journal of Biological and Chemical
Sciences, 10(4), 1869-1887.
Anand, P. S. S., Kohli, M. P. S., Kumar, S., Sundaray, J. K., Roy, S. D., Venkateshwarlu, G., Sinha,
A., & Pailan, G. H. (2014). Effect of dietary supplementation of biofloc on growth performance and
digestive enzyme activities in Penaeus monodon. Aquaculture, 418-419, 108-115.
https://doi.org/10.1016/j.aquaculture.2013.09.051
Anasori, N., Farahnak, A., Golmohamadi, T., Eshraghian, M., & Molaei Rad, M. (2015).
Comparative assay of protease enzyme activity in protoscolices (Hydatid cyst) and liver tissues.
Archives of Advances in Biosciences, 6(1). https://doi.org/10.22037/jps.v6i1.8116
Ardjosoediro, I., & Ramnarine, I. W. (2002). The influence of turbidity on growth, feed conversion
and survivorship of the Jamaica red tilapia strain. Aquaculture, 212(1), 159-165.
https://doi.org/https://doi.org/10.1016/S0044-8486(01)00881-X
Avnimelech, Y. (1999). Carbon/nitrogen ratio as a control element in aquaculture systems. Aquaculture,
176(3), 227-235. https://doi.org/https://doi.org/10.1016/S0044-8486(99)00085-X
Avnimelech, Y. (2007). Feeding with microbial flocs by tilapia in minimal discharge bio-flocs
technology ponds. Aquaculture, 264(1), 140-147. https://doi.org/10.1016/j.aquaculture.2006.11.025
