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AQUAUCLATURE
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Research and Studies 1 (1): 15-01, 2026 page of 193
Goda, A.M. A.-S., Mohammady, E.Y., Aboseif, A.M., Aboushabana, N.M.,
Helal, A.M., Abdelaty, B.S., Ashour, M. & El-Haroun, E. (2025b)
Comparative socioeconomic, environmental and technical analysis of
conventional versus smart sustainable integrated multi-trophic aqua-
ponics systems. Scientific Reports, 15:39414.
https://doi.org/10.1038/s41598-025-23039-2
Goddek, S., Delaide, B., Mankasingh, U., Ragnarsdottir, K. V., Jijakli, H., &
Thorarinsdottir, R. (2015). Challenges of sustainable and commercial
aquaponics. Sustainability, 7(4), 4199-4224.
Ibáñez Otazua, N.; Blázquez Sánchez, M.; Ruiz Yarritu, O.; Unzueta Bal-
maseda, I.; Aboseif, A.M.; Abou Shabana, N.M.; Taha, M.K.S. and
Goda, A.M.A. (2022) Integrated Multitrophic Aquaponics—A Prom-
ising Strategy for Cycling Plant Nutrients and Minimizing Water Con-
sumption. Biol. Life Sci. Forum, 16, 28. https://doi.org/ 10.3390/IE-
CHo2022-12493
Neori, A., Chopin, T., Troell, M., Buschmann, A. H., Kraemer, G. P., Halling,
C., ... & Yarish, C. (2004). Integrated aquaculture: rationale, evolu-
tion and state of the art emphasizing seaweed biofiltration in modern
mariculture. Aquaculture, 240(1-4), 1-4.
Rakocy, J. E., Masser, M. P., & Losordo, T. M. (2006). Recirculating aqua-
culture tank production systems: aquaponics—integrating fish and
plant culture. SRAC Publication, 454, 1-16.
Somerville, C., Cohen, M., Pantanella, E., Stankus, A., & Lovatelli, A.
(2014). Small-scale aquaponics food production: integrated fish and
plant farming. FAO Fisheries and Aquaculture Technical Paper, No.
589. Rome: FAO.
Vision of Egypt, 2030 (2023) The National Agenda for Sustainable Develop-
ment Egypt’s Updated Vision 2030.
https://mped.gov.eg/Files/Egypt_Vision_2030_EnglishDig-
italUse.pdf

