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Azo dye-Yellow 17 wastewater Photocatalytic degradation of by UV/TiO_2 combined with ultrasonic procedure

机译:AZO染料17废水光催化通过UV / TiO_2结合超声波的光催化降解

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The study combined UV/TiO_2 with ultrasonic procedure to degrade azo dye wastewater of Acid Yellow 17. The effects of factors including pH value, initial concentration of dye, and quantities of TiO_2, Fe (II), and Fe (III) added on the removal efficiency of azo dye Acid Yellow 17 were investigated. Experimental results revealed significant additive effect attributed to the combination of two procedures under 13-watt UV irradiation and 10-watt ultrasound. Analysis of the catalyst properties indicated no evident changes in the appearance of crystal and TiO_2 catalyst by UV/TiO_2 combined with ultrasonic procedure. However, the specific surface area was increased by approximately 53%. No effective formation of hydrogen peroxide (ND≤1 mg/L) proved that the addition of Fe (II) and Fe (III) failed to induce the Fenton-like reaction effectively. Nevertheless, the addition of Fe ions affected significantly the initial adsorption and the degradation rate of the dye. Moreover, the treatment efficiency of Fe (III) was found to be superior to that of Fe (II) under the same concentration.
机译:研究组合UV / TiO_2具有超声过程,降解酸黄17的氮杂染料废水。包括pH值,染料初始浓度和TiO_2,Fe(II)和Fe(III)的抗体的影响研究了偶氮染料黄17的去除效率。实验结果显示出归因于13瓦紫外线照射下的两种方法和10瓦超声的组合归因于两种方法的显着添加剂效应。催化剂特性的分析表明,通过UV / TiO_2结合超声方法,晶体和TiO_2催化剂的出现没有明显的变化。然而,比表面积增加约53%。没有有效地形成过氧化氢(ND≤1mg/ L)证明了加入Fe(II)和Fe(III)未能有效地诱导芬顿样反应。然而,加入FeIons的影响显着影响染料的初始吸附和降解率。此外,发现Fe(III)的治疗效率优于相同浓度的Fe(II)的处理效率。

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