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Photo-Electrocatalysis to Mitigate the Environmental Impact of Nitrogen Compound Pollution in the Water and into the Atmosphere in Recirculating Aquaculture Systems for Trout

Articolo
Data di Pubblicazione:
2026
Citazione:
Photo-Electrocatalysis to Mitigate the Environmental Impact of Nitrogen Compound Pollution in the Water and into the Atmosphere in Recirculating Aquaculture Systems for Trout / E. Buoio, L.M.. - In: SUSTAINABILITY. - ISSN 2071-1050. - 18:14(2026 Jul 17), pp. 7333.1-7333.29. [10.3390/su18147333]
Abstract:
Aquaculture has rapidly expanded, surpassing capture fisheries and playing a vital role in global food security. However, this growth raises environmental concerns, especially regarding nitrogen waste accumulation in recirculating aquaculture systems (RASs). Nitrogen compounds from uneaten feed and fish excreta, mainly ammonia (NH3) and nitrite (NO2−), lead to water pollution, eutrophication, and greenhouse gas emissions. This study describes the setup and the efficiency of a new photo-electrocatalytic (PEC) system in reducing nitrogen waste in a high-density RAS for rainbow trout (30 kg/m3). The PEC system, an evolution of a pure photocatalytic system, was integrated in the units of the RAS and tested for the first time in field conditions, combining photocatalysis and electrochemical oxidation to convert toxic nitrogen species (NH3) into less harmful nitrogen forms (NO3− and N2), aiming to mitigate both water and atmospheric pollution. Over a 4-week period, water nitrogen compounds, ammonia and greenhouse gases (carbon dioxide, nitrous oxide and methane) emitted by water were continuously monitored in two groups of three tanks (PEC vs. control). Each tank was equipped as an independent RAS unit. PEC treatment led to significantly lower NH3 concentrations (0.96 ± 0.2 mg/L vs. 1.78 ± 0.2 mg/L, p < 0.01), lower NO2− levels and higher NO3− levels (61.77 ± 2.14 mg/L vs. 53.10 ± 2.14 mg/L, p < 0.01) in water, indicating efficient nitrogen oxidation. Gaseous emissions were also reduced: NH3 (1.49 vs. 2.64 mg/m2/day, p < 0.05) and N2O (1.44 vs. 2.88 mg/m2/day, p < 0.05). These results support PEC technology as a promising solution for improving nitrogen management in intensive aquaculture. Although challenges remain in optimizing energy use and scalability, PEC offers a valuable strategy for reducing environmental impact while sustaining productivity in the aquaculture industry.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
ammonia emissions; aquaculture; greenhouse gases emissions; nitrogen compound mitigation; nitrogen compounds; photo-electrocatalysis (PEC); RAS; trout;
Elenco autori:
E. Buoio, L. Maistrello, S. Livolsi, A. Di Giancamillo, L. Aidos, G. Mirra, C. Bazzocchi, R. Rossi, D. Bertotto, G. Radaelli, N. Cherif, T. Temraz, G.L. Chiarello, A. Costa
Autori di Ateneo:
BAZZOCCHI CHIARA ( autore )
CHIARELLO GIAN LUCA ( autore )
COSTA ANNAMARIA ( autore )
DI GIANCAMILLO ALESSIA ( autore )
MAISTRELLO LUCA ( autore )
MATELA DA SILVA AIDOS MARIA LUCIA ( autore )
MIRRA GIORGIO ( autore )
ROSSI RAFFAELLA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/1264875
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/1264875/3383398/sustainability-18-07333-v2.pdf
Progetto:
Photocatalytic water remediation for sustainable fish farming (Fish-PhotoCAT)
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Aree Di Ricerca

Settori (5)


Settore AGRI-04/B - Meccanica agraria

Settore AGRI-09/B - Nutrizione e alimentazione animale

Settore CHEM-02/A - Chimica fisica

Settore MVET-01/A - Anatomia veterinaria

Settore MVET-03/B - Parassitologia e malattie parassitarie degli animali e dell'uomo
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