Effect of operating parameters on color and COD removal performance of SBR: Sludge age and initial dyestuff concentration
Effect of sludge and initial dyestuff concentration on color and COD removal performance of anaerobic–aerobic sequential batch reactor was investigated. Remazol Red RR a vinylsulphonyl (VS) and monochlortriazine (MCT), reactive azo dye was used in the study. Sludge age was varied between θ C = 12 da...
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Veröffentlicht in: | Journal of hazardous materials 2005-08, Vol.123 (1), p.217-222 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Effect of sludge and initial dyestuff concentration on color and COD removal performance of anaerobic–aerobic sequential batch reactor was investigated. Remazol Red RR a vinylsulphonyl (VS) and monochlortriazine (MCT), reactive azo dye was used in the study. Sludge age was varied between
θ
C
=
12 days and
θ
C
=
30 days and dyestuff concentration was between
D
0
=
50 and
D
0
=
500
mg
l
−1. The maximum color and COD removal was obtained as 95% and 70% for
D
0
=
60
mg
l
−1 and COD
0
=
800
mg
l
−1 at 15 days sludge retention time, respectively, and no further improvement was observed when sludge age was increased to 30 days. The main color removal phase in this operation system was the anaerobic phase. Because, the color removal efficiency was already above 95% under anaerobic condition and therefore, the contribution of aerobic phase to color removal was negligible. Increasing dyestuff concentration did not significantly affect the decolorization. It was possible to obtain over 90% dyestuff removal even at
D
0
=
500
mg
l
−1. SBR system reduces 1000
mg
l
−1 initial COD concentrations to about 400
mg
l
−1 for dyestuff concentration up to 150
mg
l
−1. COD removal efficiency decreased from 70% to 60% by increasing initial dyestuff concentration from 100 to 500
mg
l
−1. The results indicated that dyestuff and COD are mainly used by anaerobic organisms and aeration does not improve the performance of SBR system. |
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ISSN: | 0304-3894 1873-3336 |
DOI: | 10.1016/j.jhazmat.2005.04.013 |