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Evaluation of Fenton oxidation process coupled with biological treatment for the removal of reactive black 5 from aqueous solution

机译:Fenton氧化工艺结合生物处理以从水溶液中去除活性黑5的评估

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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.
机译:由于偶氮染料结构复杂且BOD与COD比率低,因此很难对其进行生物降解。在本研究中,评估了使用Fenton试剂(H2O2?+?Fe2 +)作为预处理过程来增强水性体系中活性黑5(RB5)的微生物转化的效率。最初的浓度为250 mg / L的RB5在60小时内通过细菌财团脱色至90%。 Fenton试剂的Fe2 +浓度为0.5 mM,H2O2浓度为2.9 mM(摩尔比,1:5.8)在pH == 3.0时最有效。 Fenton-生物处理联合去除RB5的程度比单独的生物处理高约2倍。某些芳族胺中间体的生产暗示着仅在Fenton处理中RB5会部分矿化。此外,GC-MS峰的减少表明芬顿生物过程中发生了脱芳香化作用。 Fenton预处理似乎是对偶氮染料进行生物处理的一种经济高效的选择,这主要是由于较低的化学品剂量,较低的污泥产生和节省时间。我们的结果证明了接种细菌聚生体的积极效果,该聚生体能够通过Fenton的预处理步骤进行染料生物降解,以及生物过程所需的时间短。此外,由于使用细菌聚生体,芬顿生物过程在野外有潜在的应用潜力,这是它的另一个积极作用。

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