首页> 外文期刊>International Journal of Environmental Bioremediation & Biodegradation >Microbial Degradation and Decolorization of Acid Orange Dye by Anaerobic /Aerobic Sequential Process
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Microbial Degradation and Decolorization of Acid Orange Dye by Anaerobic /Aerobic Sequential Process

机译:厌氧/好氧顺序工艺对酸性橙染料的微生物降解与脱色

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This study investigates the anaerobic treatability of Acid orange dye in an anaerobic/aerobic sequential process. Laboratory scale anaerobic baffled reactor and fixed activated sludge reactor were operated at different organic loadings and hydraulic retention times. The effects of shock dye concentration on the chemical oxygen demand and color removal efficiencies were investigated in the anaerobic baffled reactor. The effect of hydraulic retention time on the color and chemical oxygen demand removal efficiencies were also investigated in the aerobic reactor. The studies were carried out in continuous mode and the effluent of the anaerobic baffled reactor was used as feed for the fixed activated sludge reactor. Chemical oxygen demand removal efficiency of 54.5% was obtained at HRT =1 day in the anaerobic reactor. The average color removal was 89.5%. Chemical oxygen demand removal efficiency of 69% was obtained at HRT =7 h in the aerobic fixed activated sludge reactor. A slight decrease of the color was also observed in the aerobic reactor. This investigation has shown that successful treatment of a highly colored wastewater is possible in the anaerobic baffled reactor. Also the results showed that, anaerobic biological system has higher efficiency in dye removal than fixed activated sludge system, while aerobic system has higher efficiency in chemical oxygen demand removal comparing with the anaerobic baffled reactor.
机译:这项研究调查了厌氧/好氧顺序过程中酸性橙染料的厌氧可处理性。实验室规模的厌氧折流板反应器和固定式活性污泥反应器在不同的有机负荷和水力停留时间下运行。在厌氧折流板式反应器中研究了增稠染料浓度对化学需氧量和脱色效率的影响。在好氧反应器中还研究了水力停留时间对颜色和化学需氧量去除效率的影响。研究以连续模式进行,厌氧折流板反应器的出水用作固定式活性污泥反应器的进料。在厌氧反应器中,HRT = 1天获得的化学需氧量去除率为54.5%。平均色去除率为89.5%。在好氧固定式活性污泥反应器中,在HRT = 7 h时,化学需氧量去除效率达到69%。在好氧反应器中还观察到颜色的轻微降低。该研究表明,在厌氧折流板反应器中成功处理高色度废水是可能的。结果还表明,与固定式活性污泥系统相比,厌氧生物系统具有比固定活性污泥系统更高的染料去除效率,而好氧系统具有比固定厌氧反应器更高的化学需氧量去除效率。

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