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Response surface methodology (RSM) analysis of photodegradation of sulfonated diazo dye Reactive Green 19 by UV/H_2O_2 process

机译:UV / H_2O_2工艺光降解磺化重氮染料Reactive Green 19的响应面法(RSM)分析

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A central composite design was used to investigate the influence of the main process parameters on the degradation of Reactive Green 19 (RG19) azo dye by the UV/H_2O_2 treatment. The combined use of UV radiation and H_2O_2 resulted in the decolorization and dearomatization of the dye. They were monitored by measuring the spectral changes occurring, respectively, in the visible and UV regions of the dye spectrum. RG19 degradation was found to be practically complete over a time of 15-60 min, for decolorization, and 50-200 min, for dearomatization, depending on the applied conditions. Both processes followed apparent first-order kinetics. The associated rate constants were used as the response variables and their dependence on initial dye and H_2O_2 concentrations, pH and reaction time was investigated by the response surface methodology. Response surface plots for the decolorization and dearomatization processes were very similar in shape. For both processes, the initial dye and H_2O_2 concentrations were the key factors controlling dye degradation.
机译:采用中心复合设计研究了主要工艺参数对UV / H_2O_2处理对活性绿19(RG19)偶氮染料降解的影响。 UV辐射和H_2O_2的组合使用导致染料脱色和脱芳香化。通过测量分别在染料光谱的可见光区域和紫外线区域中发生的光谱变化来监视它们。发现RG19降解实际上在15-60分钟的时间内完成脱色,而在50-200分钟的时间内脱芳香化,这取决于所应用的条件。这两个过程都遵循明显的一阶动力学。将相关的速率常数用作响应变量,并通过响应面方法研究了它们对初始染料和H_2O_2浓度,pH和反应时间的依赖性。脱色和脱芳香化过程的响应面图形状非常相似。对于这两个过程,初始染料浓度和H_2O_2浓度都是控制染料降解的关键因素。

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