4.7 Article

An integrated (electro- and bio-oxidation) approach for remediation of industrial wastewater containing azo-dyes: Understanding the degradation mechanism and toxicity assessment

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 318, 期 -, 页码 203-215

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ELSEVIER
DOI: 10.1016/j.jhazmat.2016.07.028

关键词

Biodegradation; Hybrid treatment; Ti/IrO2-RuO2-TiO2; Phyto-toxicity; Textile effluent

资金

  1. Department of Science and Technology (DST-INSPIRE), New Delhi, India
  2. Council of Scientific and Industrial Research (CSIR), New Delhi, India
  3. CSIR [CSC 0113]

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A hybrid approach for the remediation of recalcitrant dye wastewater is proposed. The chlorine-mediated electrochemical oxidation of real textile effluents and synthetic samples (using Ti/IrO2-RuO2-TiO2 anodes), lead to discoloration by 92% and 89%, respectively, in 100 min, without significant mineralization. The remediation was obtained through biodegradation, after removing the residual bio-toxic active chlorine species via sunlight exposition. Results show that the electrochemical discoloration enhances the effluent biodegradability with about 90% COD removal employing acclimatized naphthalene-degrading bacterial consortia, within 144 h. Based on results obtained through FT-IR and GC-MS, it is likely that azo group stripping and oxidative cleavage of dyes occur due to the nucleophilic attack of active chlorine species during electro-oxidation. This leads to generation of aromatic intermediates which are further desulfonated, deaminated or oxidized only at their functional groups. These aromatic intermediates were mineralized into simpler organic acids and aldehydes by bacterial consortia. Phyto-toxicity trials on Vigna radiate confirmed the toxic nature of the untreated dye solutions. An increase in root and shoot development was observed with the electrochemically treated solutions, the same was higher in case of bio-treated solutions. Overall, obtained results confirm the capability of the proposed hybrid oxidation scheme for the remediation of textile wastewater. (C) 2016 Elsevier B.V. All rights reserved.

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