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Degradation of a textile reactive azo dye by a combined biological-photocatalytic process: Candida tropicalis Jks2 -Tio2/Uv

机译:组合的生物光催化方法降解纺织活性偶氮染料:热带假丝酵母Jks2-Tio2 / Uv

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摘要

In the present study, the decolorization and degradation of Reactive Black 5 (RB5) azo dye was investigated by biological, photocatalytic (UV/TiO2) and combined processes. Application of Candida tropicalis JKS2 in treatment of the synthetic medium containing RB5 indicated complete decolorization of the dye with 200 mg/L in less than 24 h. Degradation of the aromatic rings, resulting from the destruction of the dye, did not occur during the biological treatment. Mineralization of 50 mg/L RB5 solution was obtained after 80 min by photocatalytic process (in presence of 0.2 g/L TiO2). COD (chemical oxygen demand) was not detectable after complete decolorization of 50 mg/L RB5 solution. However, photocatalytic process was not effective in the removal of the dye at high concentrations (≥200 mg/L). With 200 mg/L concentration, 74.9% of decolorization was achieved after 4 h illumination under photocatalytic process and the absorbance peak in UV region (attributed to aromatic rings) was not completely removed. A two-step treatment process, namely, biological treatment by yeast followed by photocatalytic degradation, was also assessed. In the combined process (with 200 mg/L RB5), absorbance peak in UV region significantly disappeared after 2 h illumination and about 60% COD removal was achieved in the biological step. It is suggested that the combined process is more effective than the biological and photocatalytic treatments in the remediation of aromatic rings.
机译:在本研究中,通过生物,光催化(UV / TiO2)和组合工艺研究了活性黑5(RB5)偶氮染料的脱色和降解。热带假丝酵母JKS2在含有RB5的合成培养基中的应用表明,在不到24小时的时间内,200 mg / L的染料就完全脱色。在生物处理过程中没有发生由于染料的破坏而导致的芳环的降解。 80分钟后,通过光催化过程(存在0.2 g / L TiO2)获得了50 mg / L RB5溶液的矿化作用。 50 mg / L RB5溶液完全脱色后,未检测到COD(化学需氧量)。然而,在高浓度(≥200 mg / L)下,光催化过程不能有效去除染料。在200 mg / L的浓度下,在光催化过程中照射4 h后,可实现74.9%的脱色,并且未完全去除UV区的吸收峰(归因于芳环)。还评估了两步处理过程,即用酵母进行生物处理,然后进行光催化降解。在组合过程中(使用200 mg / L RB5),照射2 h后,UV区的吸收峰明显消失,在生物步骤中实现了约60%的COD去除。建议在芳香环的修复中,组合方法比生物和光催化处理更有效。

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