References
- Barrington K., Chopin T., Robinson S., (2009), Integrated multi-trophic aquaculture(IMTA) in marine temperate waters; D. Soto (Ed.), Integrated Mariculture: a Global Review, FAO Fisheries and Aquaculture Technical Paper, no. 529, pp. 7-46
- Björk M., Short F., Mcleod E., Beer S., (2008), Managing Seagrasses for Resilience to Climate Change International Union for Conservation of Nature, Gland, IUCN Resilience Science Group Working Paper Series, no 3.
- Bostock J., Muir J., Young J., Newton R., Paffrath S., (2008) Prospective Analysis of the Aquaculture Sector in the EU; European Commission. Joint Research Centre, Institute for Prospective Technological Studies: Seville, Spain.
- Chopin, T., (2011) Progression of the integrated multi-trophic aquaculture (IMTA) concept and upscaling of IMTA systems towards commercialization. Aquac. Eur., vol. 36, pp. 5–12.
- Chopin T., Cooper J.A., Reid G., Cross S., Moore C., (2012) Open-water integratedmulti-trophic aquaculture: Environmental biomitigation and economic diversification of fed aquaculture by extractive aquaculture Rev. Aquac., vol. 4, pp. 209–220. https://doi.org/10.1111/j.1753-5131.2012.01074.x
- Chopin, T., (2013) Aquaculture, Integrated Multi-trophic (IMTA). Springer-Verlag Berlin Heidelberg,1-21. http://www.springerreference.com/index/chapterdbid/226358
- Kawasaki N., Kushairi M.R.M., Nagao N., Yusoff F., Imai A., Kohzu A., (2016), Release of nitrogen and phosphorus from aquaculture farms to Selangor River, Malaysia, International Journal of Environmental Science and Development, 7(2): 113-117. https://doi.org/10.7763/IJESD.2016.V7.751
- Kibria A.S.M, Haque, M.M., (2018), Potentials of integrated multi-trophic aquaculture(IMTA) in freshwater ponds in Bangladesh, Aquaculture Reports, vol. 11, pp. 8-16. https://doi.org/10.1016/j.aqrep.2018.05.004
- Kumar, D., Pandey, L.K., Gaur, J.P., (2018), Growth of Phormidium bigranulatum-dominated mat in relation to nature of the substratum, time, pH and nutrient availability, Environmental Engineering and Management Journal, vol. 17, pp. 307-316. https://doi.org/10.30638/eemj.2018.032
- Lamprianidou F., Telfer T., Ross L.G., (2015), A model for optimization ofthe productivity and bioremediation efficiency of marine integrated multitrophic aquaculture, Estuarine, Coastal and Shelf Science, vol. 164, pp. 253-264. https://doi.org/10.1016/j.ecss.2015.07.045
- Le Gouvello R., Hochart L.E., Laffoley D., Simard F., Andrade C., Angel D., Callier, M., De Monbrison D., Fezzardi D., Haroun R., Harris A., Hughes A., Massa F., Roque E., Soto D., Stead S., Marino G., (2017) Aquaculture and marine protected areas: potential opportunities and synergies, Aquat. Conserv. Mar. Freshwat. Ecosyst., vol. 27, pp. 138-150 https://doi.org/10.1002/aqc.2821
- Lia M., Callier M.D., Blancheton J.P., Galèsc A., Nahond S., Triplete S., Geoffroye, T., Menniti C., Fouilland E., Roque d'orbcastel E., Bioremediation of fishpond effluent and production of microalgae for an oyster farm in an innovative recirculating integrated multi-trophic aquaculture system; Aquaculture, vol. 504, pp. 314-325. https://doi.org/10.1016/j.aquaculture.2019.02.013
- Metaxa I., Petrea S.M., Mogodan A., (2019), Balance of phosphorus in two different types of cyprinids polyculture ponds, Environ. Engineering and Manag. Journal, vol. 18, no. 8, pp. 1821-1832
- Nesar A., Marion G., 2016, Review: Can “Integrated Multi-Trophic Aquaculture (IMTA)” adapt to climate change in coastal Bangladesh?, Ocean & Coastal Manag., 132:20-131. https://doi.org/10.1016/j.ocecoaman.2016.08.017
- Petrea S.M., Mogodan A., Metaxa I., Plăcintă S., Vasile M.A., Huian G., (2017) Acomparative study on the evaluation of cyprinids growth performance in IMTA systems. AACL Bioflux, vol. 10, no. 1, pp. 87-102
- Shpigel, M., Ben Ari, T., Shauli, L., Odintsov, V., Ben-Ezra, D., 2016, Nutrient recovery and sludge management in seabream and grey mullet co-culture in Integrated Multi-Trophic Aquaculture (IMTA), Aquaculture, vol. 464, pp. 316-322. https://doi.org/10.1016/j.aquaculture.2016.07.007
- Simionov I.A., Cristea V., Petrea Ș.M., Bocioc E., Plăcintă S., (2017) The influence of water and sediments nitrite concentration on chemical fish meat composition in different aquatic ecosystems. Revue Roumaine de Chimie, 62(10): 783-791
- Sreejariya P., Gallardo W., Dabbadie L., (2011) The Role of Integrated Multi-trophic Aquaculture (IMTA) in Climate Change Mitigation and Adaptation; Asian Institute of Technology, Bangkok
- Turcios A.E., Papenbrock J., (2014) Sustainable treatment of aquaculture effluents-what can we learn from the past for the future? Sustainability, 6(2):36–856. https://doi.org/10.3390/su6020836
- Troell M., Joyce A., Chopin T., Neori A., Buschmann A.H., Fang J.G., (2009) Ecological engineering in aquaculture-potential for integrated multi-trophic aquaculture (IMTA) in marine offshore systems. Aquaculture, 297(1-4): 1–9. https://doi.org/10.1016/j.aquaculture.2009.09.010
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