Aerobic decolourization of the indigo dye-containing textile wastewater using continuous combined bioreactors

An aerobic bioprocess was applied to Indigo dye-containing textile wastewater treatment aiming at the colour elimination and biodegradation. A combined aerobic system using continuous stirred tank reactor (CSTR) and fixed film bioreactor (FFB) was continuously operated at constant temperature and fe...

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Veröffentlicht in:Journal of hazardous materials 2008-04, Vol.152 (2), p.683-689
Hauptverfasser: Khelifi, Eltaief, Gannoun, Hana, Touhami, Youssef, Bouallagui, Hassib, Hamdi, Moktar
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Sprache:eng
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Zusammenfassung:An aerobic bioprocess was applied to Indigo dye-containing textile wastewater treatment aiming at the colour elimination and biodegradation. A combined aerobic system using continuous stirred tank reactor (CSTR) and fixed film bioreactor (FFB) was continuously operated at constant temperature and fed with the textile wastewater (pH: 7.5 and total chemical oxygen demand (COD): 1185 mg l −1). The CSTR is a 1 l continuous flow stirred tank reactor with a 700 ml working volume, and operated with a variable wastewater loading rate (WLR) from 0.92 to 3.7 g l −1 d −1. The FFB is a 1.5 l continuous flow with three compartments packed with a rippled cylindrical polyethylene support, operated with a variable WLR between 0.09 and 0.73 g l −1 d −1. The combined two bioreactors were inoculated by an acclimated microbial consortium and continuously operated with four total WLR. This system presented high COD elimination and colour removal efficiencies of 97.5% and 97.3%, respectively, obtained with a total hydraulic retention time (HRT) of 4 days and total WLR of 0.29 g l −1 d −1. The effects of WLR on absorption phenomena on the yield of conversion of substrate on biomass ( R TSS/COD) and on the yield of conversion of substrate on active biomass ( R VVS/COD) are discussed. The increase of WLR and the decrease of HRT diminished the performances of this system in terms of decolourization and COD removal explained by the sloughing of biofilm, and the washout phenomena.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2007.07.059