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Functional group influences on the reactive azo dye decolorization performance by electrochemical oxidation and electro-Fenton technologies

机译:电化学氧化与电芬科技对反应性AZO染料脱色性能的函数群

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摘要

Electrochemical water treatment technologies are highly promising to achieve complete decolorization of dyebath effluents, as demonstrated by several studies reported in the literature. However, these works are focused on the treatment of one model pollutant and generalize the performances of the processes which are not transposable since they depend on the pollutant treated. Thus, in the present study, we evaluate, for the first time, the influence of different functional groups that modify the dye structure on the electrochemical process decolorization performance. The textile azo dyes Reactive Orange 16, Reactive Violet 4, Reactive Red 228, and Reactive Black 5 have been selected because they present the same molecular basis structure with different functional groups. The results demonstrate that the functional groups that reduce the nucleophilicity of the pollutant hinder the electro-philic attack of electrogenerated hydroxyl radical. Thereby, the overall decolorization efficiency is consequently reduced as well as the decolorization rate. Moreover, the presence of an additional chromophore azo bond in the molecule enhances the recalcitrant character of the azo dyes as pollutants. The formation of a larger and more stable conjugated pi system increases the activation energy required for the electrophyilic attack of (OH)-O-center dot, affecting the performance of electrochemical technologies on effluent decolorization.
机译:电化学水处理技术具有高度令人欣然的是,在文献中报告的几项研究表明,达到染料流出物的完全脱色。然而,这些作品专注于治疗一种模型污染物,并概括了不转移的过程的性能,因为它们取决于污染物治疗。因此,在本研究中,我们首次评估了改变染料结构对电化学过程脱色性能的不同官能团的影响。选择纺织偶氮染料反应性橙16,反应性紫4,反应性红色228和反应性黑5,因为它们呈现出与不同官能团的相同分子基结构。结果表明,降低污染物亲核的亲态性的官能团阻碍了电流羟基的电融化。由此,因此整体脱色效率和脱色率降低。此外,分子中存在额外的发色团Azo键的存在增强了亚氮染料作为污染物的醋核特征。较大且更稳定的共轭PI系统的形成增加了(OH)-o中心点的电泳攻击所需的活化能量,影响电化学技术对流出物脱色的性能。

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