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Sono-advanced Fenton decolorization of azo dye Orange G: Analysis of synergistic effect and mechanisms

机译:先进的Fenton偶氮染料Orange G的Fenton脱色:协同效应和机理分析

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摘要

In this study, a successful decolorization of Orange G was achieved by means of coupling zero valent iron (ZVI), H2O2 and ultrasound (US) under acidic pH conditions. The synergistic effect and characterization of potential roles of the factors including ZVI, tert-Butanol as radical scavenger, dissolved ferrous ions and H2O2 generated from sonication were evaluated in this sono-advanced Fenton process (SAFP) system. A clear synergy was evident in terms of decolorization rate and the TOC removal as the input of US enhanced the activity of the Fe-0/H2O2 system. The results suggested that the ZVI was potential replacement for the Fe2+ ion. This remarkable activity was attributed to the capacity of Fe2+ formed and reduction of sonic-dissolved Fe2+ concentration by the formation of {Fe center dot Fe2+}. The modification of the condition of H2O2 addition such as the dosage and input method showed significant variations in terms of decolorization rate. This result indicated that the optimal external addition of H2O2 and input method is a limited factor of decolorization rate due to its comparatively insufficient generated by ultrasound. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过在酸性pH条件下偶合零价铁(ZVI),过氧化氢和超声(US),实现了橙G的成功脱色。在此先进的Fenton工艺(SAFP)系统中,评估了ZVI,叔丁醇作为自由基清除剂,溶解的亚铁离子和超声处理产生的H2O2等因素的协同效应和潜在作用的表征。就脱色率和TOC去除而言,明显的协同作用是显而易见的,因为美国的投入提高了Fe-0 / H2O2系统的活性。结果表明,ZVI可能替代了Fe2 +离子。这种显着的活性归因于通过形成{Fe中心点Fe2 +}而形成的Fe2 +的能力和降低了声溶解的Fe2 +的浓度。 H2O2添加条件的改变(例如剂量和输入方法)在脱色率方面显示出显着变化。该结果表明,H2O2和输入法的最佳外部添加是脱色率的限制因素,因为超声波产生的脱色率相对不足。 (C)2015 Elsevier B.V.保留所有权利。

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