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Degradation of a textile reactive Azo dye by a combined chemical-biological process: Fenton's reagent-yeast

机译:结合化学-生物过程降解纺织活性偶氮染料:Fenton试剂酵母

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摘要

This work presents the results of our studies on the decolorization of aqueous azo dye Reactive black 5 (RB5) solution combining an advanced oxidation process (Fenton's reagent) followed by an aerobic biological process (mediated by the yeast Candida oleophila). Under our conditions, initial experiments showed that Fenton's process alone, as well as aerobic treatment by C. oleophila alone, exhibited the capacity to significantly decolorize azo dye solutions up to 200 mg/L, within about 1 and 24 h, respectively. By contrast, neither Fenton's reagent nor C. oleophila sole treatments showed acceptable decolorizing abilities for higher initial dye concentrations (300 and 500 mg/L). However, it was verified that Fenton's reagent process lowered these higher azo dye concentrations to a value less than 230 mg/L, which is apparently compatible with the yeast action. Therefore, to decolorize higher concentrations of RB5 and to reduce process costs the combination between the two processes was evaluated. The final decolorization obtained with Fenton's reagent process as primary treatment, at 1.0 x 10~(-3)mol/L H_2O_2 and 1.0 x 10~(-4)mol/L Fe~(2+), and growing yeast cells as a secondary treatment, achieves a color removal of about 91% for an initial RB5 concentration of 500 mg/L.
机译:这项工作介绍了我们对偶氮染料活性黑5(RB5)水溶液进行脱色的研究结果,该溶液结合了先进的氧化过程(芬顿试剂)和有氧生物过程(由酵母假丝酵母介导)。在我们的条件下,初步实验表明,单独的Fenton法以及仅通过嗜油衣芽孢杆菌进行好氧处理,分别具有在约1小时和24小时内使高达200 mg / L的偶氮染料溶液显着脱色的能力。相比之下,对于较高的初始染料浓度(300和500 mg / L),Fenton试剂和亲油衣梭菌唯一处理均未显示出可接受的脱色能力。但是,已证实Fenton试剂工艺将这些较高的偶氮染料浓度降低至小于230 mg / L的值,这显然与酵母的作用兼容。因此,为了使较高浓度的RB5脱色并降低工艺成本,对两种工艺的组合进行了评估。以Fenton试剂法为主要处理剂,以1.0 x 10〜(-3)mol / L H_2O_2和1.0 x 10〜(-4)mol / L Fe〜(2+)进行最终脱色,并以二次处理,对于初始RB5浓度为500 mg / L,可实现约91%的脱色。

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