Wet air oxidation induced enhanced biodegradability of distillery effluent

The present study reports the feasibility of Wet Air Oxidation (WAO) as a pretreatment option for enhanced biodegradation of complex distillery effluent. Initially, the distillery effluent was pretreated by WAO at different process conditions (pressure, temperature and time) to facilitate enhancemen...

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Veröffentlicht in:Journal of environmental management 2014-04, Vol.136, p.132-138
Hauptverfasser: Malik, S.N., Saratchandra, T., Tembhekar, P.D., Padoley, K.V., Mudliar, S.L., Mudliar, S.N.
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Sprache:eng
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Zusammenfassung:The present study reports the feasibility of Wet Air Oxidation (WAO) as a pretreatment option for enhanced biodegradation of complex distillery effluent. Initially, the distillery effluent was pretreated by WAO at different process conditions (pressure, temperature and time) to facilitate enhancement in the biodegradability index (BI = BOD5: COD ratio). The biodegradability of WAO pretreated effluent was evaluated by subjecting it to aerobic biodegradation and anaerobic followed by aerobic biodegradation. Aerobic biodegradation of pretreated effluent with enhanced biodegradability index (BI = 0.4–0.8) showed enhanced COD reduction of up to 67.7%, whereas the untreated effluent (BI = 0.17) indicated poor COD reduction of only 22.5%. Anaerobic followed by aerobic biodegradation of pretreated effluent has shown up to 87.9% COD reduction, while the untreated effluent has shown only 43.1% COD reduction. Bio-kinetic parameters also confirmed the increased rate of bio-oxidation at enhanced BIs. The results indicate that the WAO pretreatment facilitates enhanced bio-oxidation/bio-degradation of complex effluents like the distillery spent wash. •WAO pretreatment resulted in the biodegradability enhancement of complex effluent.•The biodegradation rate was significantly higher in pretreated effluent.•Higher COD reduction was obtained during anaerobic–aerobic biodegradation study.•Biokinetic parameters also confirmed the enhanced rate of biodegradation.
ISSN:0301-4797
1095-8630
DOI:10.1016/j.jenvman.2014.01.026