Author/Authors :
Bahmani، Pegah نويسنده Kurdistan Rural Water and Wastewater Company, Sanandaj, Iran , , Rezaei Kalantary، Roshanak نويسنده Department of Environmental Health, School of Health, Tehran University of Medical Sciences, Tehran, Iran. Rezaei Kalantary, Roshanak , Esrafili، Ali نويسنده Department of Environmental Health Engineering, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran , , Gholami، Mitra نويسنده 1Depatment of Environmental Engineering, School of Public Health, Center for Water Quality Research, Tehran University of Medical Sciences, Tehran, Iran , , Jonidi Jafari، Ahmad نويسنده Department of Occupational and Environment Health, Medical Sciences, Tarbiat Modares University, Tehran, Iran. ,
Abstract :
Biodegradation of azo dyes is difficult due to their complex structures and low BOD to COD ratios. In the present
study, the efficiency of using Fenton’s reagent (H2O2 + Fe2+) as a pretreatment process to enhance microbial
transformation of reactive black 5 (RB5) in an aqueous system was evaluated. The RB5 with an initial concentration
of 250 mg/L was decolorized up to 90% in 60 h by using a bacterial consortium. Fenton’s reagent at a Fe2+
concentration of 0.5 mM and H2O2 concentration of 2.9 mM (molar ratio, 1:5.8) was most effective for
decolorization at pH = 3.0. The extent of RB5 removal by the combined Fenton–biotreatment was about 2 times
higher than that of biotreatment alone. The production of some aromatic amines intermediates implied partial
mineralization of the RB5 in Fenton treatment alone; in addition, decreasing of GC-MS peaks suggested that
dearomatization occurred in Fenton-biological process. Fenton pretreatment seems to be a cost–effective option
for the biotreatment of azo dyes, due mainly to the lower doses of chemicals, lower sludge generation, and saving
of time. Our results demonstrated positive effects of inoculating bacterial consortium which was capable of dye
biodegradation with a Fenton’s pretreatment step as well as the benefits of low time required for the biological
process. In addition, the potential of field performance of Fenton-biological process because of using bacterial
consortium is an other positive effect of it.