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Efficient treatment of high-salinity aquaculture effluents through synergistic membrane distillation and VUV/UVC photolysis

Articolo
Data di Pubblicazione:
2024
Abstract:
Effluents from mariculture facilities typically marked contain high salinity and organic loadings, including anti-parasitic chemicals such as formaldehyde. The direct discharge of such effluents poses serious environmental risks, thus requiring the development of sustainable methods for their treatment. Within this context, a novel approach based on the synergistic integration of thermally driven membrane distillation (MD) and vacuum-ultraviolet/ultraviolet-C (VUV/UVC) photolysis is proposed for the treatment of highly polluted saline water without the need of intensive pretreatments or chemical additives. In this specific work, the performances of the proposed integrated treatment process were explored for inland mariculture effluent. The MD system was able to reclaim 90 % of the effluent as distilled water. Concurrently, salts in the MD concentrate were recovered. The subsequent polishing of the MD permeate solution via VUV/UVC photolysis allowed the abatement of the volatiles present in the MD permeate, bringing the concentrations of formaldehyde and total organic carbon (TOC) below the detection limits (0.5 mg L−1 for both techniques) within 20 min of treatment. The novel integrated system improves the purity of the recycled water and serves as an example of sustainable mariculture effluent management, advancing towards zero-liquid discharge within this field.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
Advanced oxidation; Aquaculture; Circular economy; Water reuse; Zero-liquid discharge
Elenco autori:
Ma, Xianzheng; Flanjak, Lana; Chen, XinXin; Morgante, Carmelo; Kirkebæk, Bastian Stiem; Boffa, Vittorio; Quist-Jensen, Cejna Anna; Ali, Aamer; Maurino, Valter; Roslev, Peter
Autori di Ateneo:
MAURINO Valter
Link alla scheda completa:
https://iris.unito.it/handle/2318/2068170
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/2068170/1789776/1-s2.0-S2214714424012741-main.pdf
Pubblicato in:
JOURNAL OF WATER PROCESS ENGINEERING
Journal
Progetto:
MAURINO V. - Progetto UE H2020 n. 776816 - "Project O" (H2020-IND-CE-2016-17/H2020-CIRC-2017TwoStage)
  • Dati Generali
  • Aree Di Ricerca

Dati Generali

URL

https://www.sciencedirect.com/science/article/pii/S2214714424012741

Aree Di Ricerca

Settori (8)


PE4_18 - Environment chemistry - (2024)

PE4_5 - Analytical chemistry - (2024)

PIANETA TERRA, AMBIENTE, CLIMA, ENERGIA e SOSTENIBILITA' - Chimica e Ambiente

PIANETA TERRA, AMBIENTE, CLIMA, ENERGIA e SOSTENIBILITA' - Energia e Fonti Energetiche

SCIENZE DELLA VITA e FARMACOLOGIA - Chimica Analitica e Farmaceutica

SCIENZE DELLA VITA e FARMACOLOGIA - Tecnologie Farmaceutiche e Cosmetiche

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Chimica Organica e Industriale

SCIENZE MATEMATICHE, CHIMICHE, FISICHE - Materiali Avanzati
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