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Broch, O. J., Klebert, P., Michelsen, F. A., & Alver, M. O. (2020). Multiscale modelling of cage
effects on the transport of effluents from open aquaculture systems. PLOS ONE, 15(3),
e0228502. https://doi.org/10.1371/journal.pone.0228502
Brownell, C. L. (1980). Water quality requirements for first-feeding in marine fish larvae. I.
Ammonia, nitrite, and nitrate. Journal of Experimental Marine Biology and Ecology,
44(2), 269-283. https://doi.org/https://doi.org/10.1016/0022-0981(80)90158-6
Brunner, G. W. (2002). Hec-ras (river analysis system). North American water and environment
congress & destructive water,
Burel, C. (2017). Bases de la nutrition et formulation en aquaculture. In: UICN-Union
Internationale pour la Conservation de la Nature; Comité Français ….
Burley, R., & Klapsis, A. (1985). Flow distribution studies in fish rearing tanks. Part 2—Analysis
of hydraulic performance of 1m square tanks. Aquacultural Engineering, 4(2), 113-134.
Burrows, R., & E. Chenoweth, H. H. (1955). Evaluation of three types of fish rearing ponds
[Report](39). (Research Report,
Issue. U. S. Fish & S. Wildlife.
http://pubs.er.usgs.gov/publication/rr39
Buschmann, A., Troell, M., Kautsky, N., & Kautsky, L. (1996). Integrated tank cultivation of
salmonids and Gracilaria chilensis (Gracilariales, Rhodophyta). Hydrobiologia, 326-327,
75-82. https://doi.org/10.1007/bf00047789
Castiglione, S. d. a. e. d. p. d. (1926). Station d'aquaculture et de pêche de Castiglione. In. Paris,
Alger: Société d'éditions géographiques, maritimes et coloniales, Station d'aquiculture
et de pêche de Castiglione.
Chalabi, A. (2003). L'aquaculture en Algérie et son contexte maghrébin. Bulletin documentaires
de l'IFREMER de Nantes, 1, 39.
Chary, K., Callier, M. D., Covès, D., Aubin, J., Simon, J., & Fiandrino, A. (2021). Scenarios of fish
waste deposition at the sub-lagoon scale: a modelling approach for aquaculture zoning
and site selection. ICES Journal of Marine Science, 78(3), 922-939.
https://doi.org/10.1093/icesjms/fsaa238
Chelossi, E., Vezzulli, L., Milano, A., Branzoni, M., Fabiano, M., Riccardi, G., & Banat, I. M. (2003).
Antibiotic resistance of benthic bacteria in fish-farm and control sediments of the
Western
Mediterranean.
Aquaculture,
219(1),
83-97.
https://doi.org/https://doi.org/10.1016/S0044-8486(03)00016-4
Cho, C. Y., & Bureau, D. P. (1998). Development of bioenergetic models and the Fish-PrFEQ
software to estimate production, feeding ration and waste output in aquaculture.
Aquatic
Living
Resources,
11(4),
199-210.
https://doi.org/https://doi.org/10.1016/S0990-7440(98)89002-5
Cho, C. Y., & Bureau, D. P. (2001). A review of diet formulation strategies and feeding systems
to reduce excretory and feed wastes in aquaculture. Aquaculture Research, 32, 349-360.
Chun, C., Vinci, B. J., & Timmons, M. B. (2018). Computational fluid dynamics characterization of
a novel mixed cell raceway design. Aquacultural Engineering, 81, 19-32.
Coldebella, A., Gentelini, A. L., Piana, P. A., Coldebella, P. F., Boscolo, W. R., & Feiden, A. (2017).
Effluents from fish farming ponds: A view from the perspective of its main components.
Sustainability, 10(1), 3.
Company, R., Calduch-Giner, J., Kaushik, S., & Pérez-Sánchez, J. (1999). Growth performance
and adiposity in gilthead sea bream (Sparus aurata): risks and benefits of high energy
diets. Aquaculture, 171(3-4), 279-292.
Costa-Pierce, B. (2002). The 'Blue Revolution' - Aquaculture Must Go Green. World Aquaculture,
33(4).
Cripps, S. J., & Bergheim, A. (2000). Solids management and removal for intensive land-based
aquaculture production systems. Aquacultural Engineering, 22(1), 33-56.
https://doi.org/https://doi.org/10.1016/S0144-8609(00)00031-5
Broch, O. J., Klebert, P., Michelsen, F. A., & Alver, M. O. (2020). Multiscale modelling of cage
effects on the transport of effluents from open aquaculture systems. PLOS ONE, 15(3),
e0228502. https://doi.org/10.1371/journal.pone.0228502
Brownell, C. L. (1980). Water quality requirements for first-feeding in marine fish larvae. I.
Ammonia, nitrite, and nitrate. Journal of Experimental Marine Biology and Ecology,
44(2), 269-283. https://doi.org/https://doi.org/10.1016/0022-0981(80)90158-6
Brunner, G. W. (2002). Hec-ras (river analysis system). North American water and environment
congress & destructive water,
Burel, C. (2017). Bases de la nutrition et formulation en aquaculture. In: UICN-Union
Internationale pour la Conservation de la Nature; Comité Français ….
Burley, R., & Klapsis, A. (1985). Flow distribution studies in fish rearing tanks. Part 2—Analysis
of hydraulic performance of 1m square tanks. Aquacultural Engineering, 4(2), 113-134.
Burrows, R., & E. Chenoweth, H. H. (1955). Evaluation of three types of fish rearing ponds
[Report](39). (Research Report,
Issue. U. S. Fish & S. Wildlife.
http://pubs.er.usgs.gov/publication/rr39
Buschmann, A., Troell, M., Kautsky, N., & Kautsky, L. (1996). Integrated tank cultivation of
salmonids and Gracilaria chilensis (Gracilariales, Rhodophyta). Hydrobiologia, 326-327,
75-82. https://doi.org/10.1007/bf00047789
Castiglione, S. d. a. e. d. p. d. (1926). Station d'aquaculture et de pêche de Castiglione. In. Paris,
Alger: Société d'éditions géographiques, maritimes et coloniales, Station d'aquiculture
et de pêche de Castiglione.
Chalabi, A. (2003). L'aquaculture en Algérie et son contexte maghrébin. Bulletin documentaires
de l'IFREMER de Nantes, 1, 39.
Chary, K., Callier, M. D., Covès, D., Aubin, J., Simon, J., & Fiandrino, A. (2021). Scenarios of fish
waste deposition at the sub-lagoon scale: a modelling approach for aquaculture zoning
and site selection. ICES Journal of Marine Science, 78(3), 922-939.
https://doi.org/10.1093/icesjms/fsaa238
Chelossi, E., Vezzulli, L., Milano, A., Branzoni, M., Fabiano, M., Riccardi, G., & Banat, I. M. (2003).
Antibiotic resistance of benthic bacteria in fish-farm and control sediments of the
Western
Mediterranean.
Aquaculture,
219(1),
83-97.
https://doi.org/https://doi.org/10.1016/S0044-8486(03)00016-4
Cho, C. Y., & Bureau, D. P. (1998). Development of bioenergetic models and the Fish-PrFEQ
software to estimate production, feeding ration and waste output in aquaculture.
Aquatic
Living
Resources,
11(4),
199-210.
https://doi.org/https://doi.org/10.1016/S0990-7440(98)89002-5
Cho, C. Y., & Bureau, D. P. (2001). A review of diet formulation strategies and feeding systems
to reduce excretory and feed wastes in aquaculture. Aquaculture Research, 32, 349-360.
Chun, C., Vinci, B. J., & Timmons, M. B. (2018). Computational fluid dynamics characterization of
a novel mixed cell raceway design. Aquacultural Engineering, 81, 19-32.
Coldebella, A., Gentelini, A. L., Piana, P. A., Coldebella, P. F., Boscolo, W. R., & Feiden, A. (2017).
Effluents from fish farming ponds: A view from the perspective of its main components.
Sustainability, 10(1), 3.
Company, R., Calduch-Giner, J., Kaushik, S., & Pérez-Sánchez, J. (1999). Growth performance
and adiposity in gilthead sea bream (Sparus aurata): risks and benefits of high energy
diets. Aquaculture, 171(3-4), 279-292.
Costa-Pierce, B. (2002). The 'Blue Revolution' - Aquaculture Must Go Green. World Aquaculture,
33(4).
Cripps, S. J., & Bergheim, A. (2000). Solids management and removal for intensive land-based
aquaculture production systems. Aquacultural Engineering, 22(1), 33-56.
https://doi.org/https://doi.org/10.1016/S0144-8609(00)00031-5
