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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Combination of photoelectrocatalysis and ozonation: A novel and powerful approach applied in Acid Yellow 1 mineralization
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Combination of photoelectrocatalysis and ozonation: A novel and powerful approach applied in Acid Yellow 1 mineralization

机译:光电催化和臭氧化的结合:一种新颖而强大的方法在酸性黄1矿化中的应用

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Photoelectrocatalytic oxidation (PEC) is known to be a powerful technique employed with the aim of promoting organic degradation. Its efficiency is nonetheless found to be dramatically decreased when applied in highly concentrated effluent treatment owing to the reduced transparency which minimizes the photons reaching the semiconductor surface. In light of that, the present work seeks to describe a novel combination of photoelectrocatalysis and ozonation (O-3 + PEC) techniques, aiming at achieving a faster decolorization of a highly concentrated solution and a higher rate of mineralization. The Acid Yellow 1 dye (AYI), widely used in cosmetics was chosen as a colorful solution model. TiO2 nanotubes electrode was used as photoanode in an annular bubble reactor operating at 2.0 V with UV-B irradiation in the presence of 1.25 x 10(-4) mol min(-1) of O-3. The main factors interfering in the O-3 + PEC process were optimized through UV/vis spectrophotometry, total organic carbon (TOC) and mass spectrometry measurements. After 20 min of treatment using the combined system, 100% of decolorization was observed while a total mineralization was seen following 60 min of treatment even in effluents containing 100 ppm AY1. Concomitantly, the combined system (O-3+ PEC) showed higher decolorization rate constant and lower energy consumption compared to the other techniques, showing that O-3 + PEC is a successful, efficient and cost-effective alternative for water treatment. (C) 2015 Elsevier B.V. All rights reserved.
机译:众所周知,光电催化氧化(PEC)是一种强大的技术,旨在促进有机降解。然而,由于降低了透明度,使光子到达半导体表面的可能性减至最小,因此,当将其用于高浓度废水处理时,其效率会大大降低。鉴于此,本工作试图描述光电催化和臭氧化(O-3 + PEC)技术的新颖组合,旨在实现高浓度溶液的更快脱色和更高的矿化速率。选择了广泛用于化妆品中的酸性黄1染料(AYI)作为彩色溶液模型。在1.25 x 10(-4)mol min(-1)的O-3存在下,在2.0 V的环形气泡反应器中,以TiO2纳米管电极作为光阳极,并通过UV-B辐射进行操作。通过紫外/可见分光光度法,总有机碳(TOC)和质谱测量,优化了干扰O-3 + PEC过程的主要因素。使用组合系统处理20分钟后,观察到100%的脱色,而处理60分钟后甚至在含有100 ppm AY1的废水中也观察到总矿化。同时,与其他技术相比,组合系统(O-3 + PEC)表现出更高的脱色速率常数和更低的能耗,表明O-3 + PEC是水处理的成功,高效且经济高效的替代方法。 (C)2015 Elsevier B.V.保留所有权利。

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