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Effect of cold plasma pre-treatment on photocatalytic activity of 3D fabric loaded with nano-photocatalysts: Response surface methodology

机译:冷等离子体预处理对负载有纳米光催化剂的3D织物的光催化活性的影响:响应面法

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In this study, the physico-chemical effects occasioned by the cold plasma discharge (CPD) on the photo decolorization of Reactive Orange 16 (RO16) by 3D fabrics (spacer fabrics) loaded with ZnO:TiO2 nano-photocatalysts (nphs) were optimized via response surface methodology (RSM). CPD was employed to improve the surface characteristics of the spacer fabrics for nphs loading. Surface morphology and color variation were studied utilizing scanning electron microscopy (SEM) and CIE-Lab system, respectively. The effect of CPD on the wetting ability of the spacer fabrics was examined using dynamic adsorption measurement (DAM). Also, X-ray fluorescence (XRF) was utilized to investigate the durability of the nphs on the spacer fabrics. All the experiments were implemented in a Box-Behnken design (BBD) with three independent variables (CPD treatment time, dye concentration and irradiation time) in order to optimize the decolorization of RO16. The anticipated values of the decolorization efficiency were found to be in excellent agreement with the experimental values (R-2 = 0.9996, Adjusted R-2 = 0.9992). The kinetic analysis demonstrated that the photocatalytic decolorization followed the Langmuir-Hinshelwood kinetic model. In conclusion, this heterogeneous photocatalytic process is capable of decolorizing and mineralizing azoic reactive dye in textile wastewater. Moreover, the results confirmed that RSM based on the BBD was a suitable method to optimize the operating conditions of RO16 degradation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,冷等离子体放电(CPD)对活性橙16(RO16)被负载ZnO:TiO2纳米光催化剂(nphs)的3D织物(间隔织物)进行光脱色的物理化学效果通过响应面方法(RSM)。 CPD被用来改善间隔织物的表面特性,以用于nphs加载。使用扫描电子显微镜(SEM)和CIE-Lab系统分别研究了表面形态和颜色变化。使用动态吸附测量(DAM)检查了CPD对间隔织物的润湿能力的影响。此外,X射线荧光(XRF)用于研究隔垫织物上nph的耐久性。所有实验均采用Box-Behnken设计(BBD)进行,具有三个独立变量(CPD处理时间,染料浓度和照射时间),以优化RO16的脱色。发现脱色效率的预期值与实验值非常吻合(R-2 = 0.9996,调整后的R-2 = 0.9992)。动力学分析表明光催化脱色遵循Langmuir-Hinshelwood动力学模型。总之,这种非均相光催化工艺能够使纺织废水中的偶氮活性染料脱色和矿化。此外,结果证实基于BBD的RSM是优化RO16降解操作条件的合适方法。 (C)2015 Elsevier B.V.保留所有权利。

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