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Photo-degradation and photo-mineralization of reactive brilliant orange KN-5R by nano-photocatalyst-modified 3D fabrics

机译:纳米光催化剂修饰的3D织物对活性艳橙KN-5R的光降解和矿化作用

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摘要

In this study, ZnO, TiO2 and ZnO/TiO2 nano-photocatalysts (nphs) were loaded into 3-dimensional fabrics (spacer fabrics) for photo-decolorization and photo-mineralization of Reactive Brilliant Orange KN-5R (RBO KN-5R). Surface morphology and the presence of nphs on the spacer fabrics were studied utilizing SEM and FTIR, respectively. Also, the effect of main operational parameters on the decolorization efficiency was investigated and the process was optimized. Furthermore, total organic carbon (TOC) analysis was employed to scrutinize the photo-mineralization of the dye. Complete decolorization, high efficient mineralization and 90% TOC reduction were achieved in the case of ZnO/TiO2 nphs after 120 min of UV light irradiation. Also, the kinetic analyses indicated that the photocatalytic decolorization rate followed the Langmuir-Hinshelwood kinetic model. The results revealed that the spacer fabrics loaded with ZnO/TiO2 nphs can be considered as an effective system for decolorization and TOC reduction of reactive dyes in textile wastewater.
机译:在这项研究中,将ZnO,TiO2和ZnO / TiO2纳米光催化剂(nphs)装入3维织物(间隔织物)中,以对活性艳橙KN-5R(RBO KN-5R)进行光脱色和光矿化。分别利用SEM和FTIR研究了间隔织物上的表面形态和nph的存在。此外,研究了主要操作参数对脱色效率的影响,并优化了工艺。此外,采用总有机碳(TOC)分析来检查染料的光矿化。 ZnO / TiO2 nphs经过120分钟的紫外线照射后,可实现完全脱色,高效矿化和90%TOC降低。另外,动力学分析表明光催化脱色速率遵循Langmuir-Hinshelwood动力学模型。结果表明,载有ZnO / TiO2 nphs的间隔织物可被视为一种有效的体系,可用于纺织废水中活性染料的脱色和TOC还原。

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