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The role of sulphate reduction on the reductive decolorization of the azo dye reactive orange 14

机译:硫酸盐还原对偶氮染料活性橙14还原脱色的作用

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The aim of this study was to investigate the impact of a broad range of sulphate concentrations (0-10g SO4-2 L-1) on the reduction of an azo dye (reactive orange 14 (RO14)) by an anaerobic sludge. An increase in the sulphate concentration generally stimulated the reduction of RO14 by sludge incubations supplemented with glucose, acetate or propionate as electron donor. Sulphate and azo dye reductions took place simultaneously in all incubations. However, there was a decrease on the rate of decolorization when sulphate was supplied at 10 g SO42- L-1. Abiotic incubations at different sulphide concentrations (0-2.5g sulphide L-1) promoted very poor reduction of RO14. However, addition of riboflavin (20 mu M), as a redox mediator, accelerated the reduction of RO14 up to 44-fold compared to a control lacking the catalyst. Our results indicate that sulphate-reduction may significantly contribute to the reduction of azo dyes both by biological mechanisms and by abiotic reductions implicating sulphide as an electron donor. The contribution of abiotic decolorization by sulphide, however, was only significant when a proper redox mediator was included. Our results also revealed that sulphate-reduction can out-compete with azo reduction at high sulphate concentrations leading to a poor decolorising performance when no sufficient reducing capacity is available.
机译:这项研究的目的是研究各种浓度的硫酸盐(0-10g SO4-2 L-1)对厌氧污泥还原偶氮染料(活性橙14(RO14))的影响。硫酸盐浓度的增加通常通过添加葡萄糖,乙酸盐或丙酸盐作为电子给体的污泥培养物刺激RO14的降低。在所有培养中硫酸盐和偶氮染料的还原同时进行。但是,当以10 g SO42-L-1提供硫酸盐时,脱色率会降低。在不同浓度的硫化物(0-2.5g硫化物L-1)下进行非生物培养会导致RO14的还原非常差。然而,与缺乏催化剂的对照相比,加入核黄素(20μM)作为氧化还原介体将RO14的还原加速至44倍。我们的结果表明,硫酸盐的还原可能通过生物学机制和非生物还原都可能对偶氮染料的还原做出显着贡献,这涉及将硫化物作为电子供体。但是,仅当包含适当的氧化还原介体时,硫化物对非生物脱色的作用才有意义。我们的结果还表明,在没有足够的还原能力时,在高硫酸盐浓度下,硫酸盐还原可以与偶氮还原相抗衡,从而导致较差的脱色性能。

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