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Visible light assisted Fenton oxidation of tartrazine using metal doped bismuth oxyhalides as novel photocatalysts

机译:金属掺杂的卤氧化铋作为新型光催化剂的可见光辅助芬顿氧化酒石tr

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摘要

This research focused on the abatement of the model food dye, tartrazine, using visible light photo-Fenton oxidation with novel bismuth oxyhalide catalysts. Bismuth-oxyhalide and metal doped bismuth oxyhalide catalysts (BiOCl, Cu-BiOCl, and Fe-BiOCl) were synthesized via the facile co-precipitation method. The catalysts were characterized by SEM-EDX, XRD, BET, and DRS analyses and the results showed that Cu-BiOCl possess a unique flower-like nanostructure with narrow band gap (2.53 eV) which enhanced its visible light photocatalytic activity remarkably which was proven by catalyst screening experiments. A detailed experimental study was carried out to investigate the effects of operating parameters on the degradation and decolorization of the dye and from this the optimum values were determined as 0.25 g/L for photocatalyst loading, 100 W for visible light power, 6 for initial pH, 6 mM for initial H2O2 concentration, and temperature of 70 degrees C. Approximately 91% degradation, 95% decolorization, and 59% TOC reduction were obtained at optimum conditions. The results for the kinetic study showed that the degradation and decolorization reactions are in the pseudo-first order and obey the simplified Langmuir-Hinselwood kinetic model. The activation energies were calculated as 86.54 and 69.39 kJ/mol for degradation and decolorization, respectively.
机译:这项研究的重点是使用新型光卤化铋催化剂利用可见光光芬顿氧化技术来减少模型食用染料酒石黄。通过简便的共沉淀法合成了卤氧化铋和金属掺杂的卤氧化铋催化剂(BiOCl,Cu-BiOCl和Fe-BiOCl)。通过SEM-EDX,XRD,BET和DRS分析对催化剂进行了表征,结果表明,Cu-BiOCl具有独特的花状纳米结构,具有窄的带隙(2.53 eV),从而显着增强了可见光的光催化活性。通过催化剂筛选实验。进行了详细的实验研究,以研究操作参数对染料降解和脱色的影响,由此确定的最佳值为光催化剂负载量为0.25 g / L,可见光功率为100 W,初始pH为6 ,初始H2O2浓度为6 mM,温度为70摄氏度。在最佳条件下可获得约91%的降解,95%的脱色和59%的TOC降低。动力学研究结果表明,降解和脱色反应处于拟一级反应,并遵循简化的Langmuir-Hinselwood动力学模型。对于降解和脱色,活化能分别计算为86.54和69.39 kJ / mol。

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