Abstract
The mechanism of decolorization of azo dyes based on the extracellular chemical reduction with sulfide (H 2S, HS −, S 2−) was postulated for sulfate reducing environments. To design technical decolorization processes of textile wastewater treatment with sulfide produced by sulfate reducing bacteria (SRB), kinetics is of great significance. Batch experiments were made in order to investigate the kinetics of abiotic decolorization of the reactive mono-azo dye C.I. Reactive Orange 96 (RO 96) with sulfide, with varying pH. The decolorization of RO 96 by sulfide under the exclusion of O 2 corresponded to first-order kinetics with respect to both dye and sulfide concentration. The decolorization of RO 96 with sulfide at neutral pH (7.1) was advantageous compared with that at pH for 4.1, 6.3, and 6.5. This is attributed to an increase in the fraction of HS − of total sulfide species at neutral pH. The rate constants k for the decolorization at 37 °C were obtained as 0.01 for pH=4.1, 0.06 for pH=6.3, 0.08 for pH=6.5, and 0.09 for pH=7.1 in mM −1 min −1. The high rate constants for sulfide at pH 6.5–7.1 support that the decolorization through SRB (i.e. by bio-sulfide) can be effective in anaerobic bacterial systems with sulfate.
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