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Promoted discoloration of methyl orange in H2O2/Fe(III) Fenton system: Effects of gallic acid on iron cycling

机译:H2O2 / Fe(III)Fenton系统中甲基橙的促进变色:没食子酸对铁循环的影响

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摘要

The promoting effect of gallic acid (GA) on the discoloration of methyl orange (MO) in H2O2/Fe(III) Fenton process was investigated in this study. The MO discoloration rate in H2O2/Fe(III) system with GA was significantly higher than that with sulfuric acid. Central composite design based on the response surface methodology (RSM) was adopted to evaluate the effects of initial Fe(III) concentration, initial pH and molar ratios of H2O2/Fe(III) and GA/Fe(III) on the discoloration rate constant k(app). The RSM model was derived and optimal molar ratios of H2O2/Fe(III) similar or equal to 100:1 and GA/Fe(III) = 2:1 were obtained. The H2O2/Fe(III)/GA system also showed good adaptability with minor decreasing trend in alkaline circumstance. Reaction mechanisms for the promoted formation of hydroxyl radical (HO center dot) by GA were proposed. GA could not only form complexes with Fe(III) to Fe(II) and prevent the precipitation of Fe(III) subsequently, but also accelerate the reduction of Fe(III) to enhance the formation of HO center dot. Moreover, the readily oxidizable characteristic of GA makes it a good option with environmental benignity in Fenton system. (C) 2016 ElSevier B.V. All rights reserved.
机译:本研究研究了没食子酸(GA)对H2O2 / Fe(III)Fenton过程中甲基橙(MO)褪色的促进作用。 GA在H2O2 / Fe(III)体系中的MO脱色率显着高于硫酸。采用基于响应面方法(RSM)的中心复合设计来评估初始Fe(III)浓度,初始pH值以及H2O2 / Fe(III)和GA / Fe(III)的摩尔比对变色速率常数的影响k(app)。推导了RSM模型,并获得了H2O2 / Fe(III)的最佳摩尔比,相似或等于100:1,GA / Fe(III)= 2:1。 H 2 O 2 / Fe(III)/ GA体系也显示出良好的适应性,在碱性条件下有较小的下降趋势。提出了GA促进羟基自由基(HO中心点)形成的反应机理。 GA不仅可以与Fe(III)形成Fe(II)的络合物并阻止Fe(III)的析出,而且可以促进Fe(III)的还原,从而增强HO中心点的形成。此外,GA的易氧化特性使其成为芬顿体系中具有环境友好性的良好选择。 (C)2016 ElSevier B.V.保留所有权利。

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