Sequential photo electro oxidation and biodegradation of textile effluent: Elucidation of degradation mechanism and bacterial diversity

Textile effluent contains a highly toxic and refractory azo dyes. Eco-friendly method for efficient decolorization and degradation of textile effluent is essential. In the present study, treatment of textile effluent was carried through sequential electro oxidation (EO) and photo electro oxidation (...

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Veröffentlicht in:Chemosphere (Oxford) 2023-08, Vol.331, p.138816-138816, Article 138816
Hauptverfasser: Abilaji, Subramani, Sathishkumar, Kuppusamy, Narenkumar, Jayaraman, Alsalhi, Mohamad S., Devanesan, Sandhanasamy, Parthipan, Punniyakotti, Muthuraj, Balakrishnan, Rajasekar, Aruliah
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Sprache:eng
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Zusammenfassung:Textile effluent contains a highly toxic and refractory azo dyes. Eco-friendly method for efficient decolorization and degradation of textile effluent is essential. In the present study, treatment of textile effluent was carried through sequential electro oxidation (EO) and photo electro oxidation (PEO) using RuO2–IrO2 coated titanium electrode as an anode and cathode followed by biodegradation. The pre-treatment of textile effluent by photo electro oxidation for 14 h exhibited 92% of decolorization. Subsequent biodegradation of the pre-treated textile effluent enhanced the reduction of chemical oxygen demand to 90%. Metagenomics results exhibited that Flavobacterium, Dietzia, Curtobacterium, Mesorhizobium, Sphingobium, Streptococcus, Enterococcus, Prevotellaand Stenotrophomonas bacterial communities majorly involved in the biodegradation of textile effluent. Hence, integrating sequential photo electro oxidation and biodegradation proposed an efficient and eco-friendly approach for treating textile effluent. [Display omitted] •Photo-electrooxidation (PEO) and sequential biodegradation of textile effluent.•PEO process achieved enhanced decolorization and degradation of textile effluent.•Mixed bacterial communities mineralized the organic compounds.•Textile effluent degradation pathway were proposed.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2023.138816