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Photoelectrochemical advanced oxidation processes on nanostructured TiO2 catalysts: Decolorization of a textile azo-dye

机译:纳米结构TiO2催化剂上的光电化学高级氧化过程:纺织品偶氮染料的脱色

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摘要

This work describes a novel approach for water treatment by photoelectrocatalysis, based on nanostructured TiO2. The decolorization of aqueous solutions containing the azo dye RR243 is carried out in a tubular photocatalytic reactor working in semi batch mode under electrical polarization of the catalyst. Two different nanostructured catalysts were tested: nanotubular TiO2 obtained by conventional anodization (CA), and a novel photoactive nanoporous TiO2 obtained by plasma electrolytic oxidation (PEO). Neither UV irradiation of the TiO2 catalysts nor the electrical bias individually considered lead to a significant reduction of the dye concentration. By irradiating the catalysts with UVC light while applying an electrical bias to the same, the concentration of the dye decreased from 25 L to 2.5 mg/L using the nanotubular CA TiO2 catalyst, and to less than 1.8 mg/L using the novel nanoporous PEO TiO2 in 50 min. The main advantages of this method over current approaches for the degradation of pollutants are both the considerable processing time reduction and a suitable and easy to scale up reactor design. A further advantage is the relatively easyness in the production of the TiO2 catalysts by PEO.
机译:这项工作描述了一种基于纳米结构的TiO2的光电催化水处理的新方法。含偶氮染料RR243的水溶液的脱色在管状光催化反应器中进行,该反应器在催化剂的电极化下以半间歇模式运行。测试了两种不同的纳米结构催化剂:通过常规阳极氧化(CA)获得的纳米管TiO2,以及通过等离子体电解氧化(PEO)获得的新型光敏纳米多孔TiO2。 TiO 2催化剂的紫外线照射或单独考虑的电偏压都不会导致染料浓度的显着降低。通过用UVC光照射催化剂,同时对其施加电偏压,使用纳米管CA TiO2催化剂,染料的浓度从25 L降至2.5 mg / L,而使用新型纳米多孔PEO降至低于1.8 mg / L TiO2在50分钟内。与目前用于污染物降解的方法相比,该方法的主要优点是可观的加工时间减少以及合适且易于扩大规模的反应器设计。另一个优点是通过PEO生产TiO 2催化剂相对容易。

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