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Using central composite experimental design to optimize the degradation of real dye wastewater by Fenton and photo-Fenton reactions

机译:采用中心复合实验设计优化Fenton和光 - Fenton反应降解实际染料废水

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摘要

This work focuses on the use of Fenton reagent and UV-irradiation, in a lab-scale experiment, for the treatment of real dye wastewater coming from a Spanish textile manufacturer. Response surface methodology and a 23 factorial design were used to evaluate the effects of the three independent variables considered for the optimization of the oxidative process: temperature, Fe (II) and H2O2 concentrations, for a textile wastewater generated during a dyeing process with chemical oxygen demand of 1705 mg L_1 O2 at pH ¼ 3.Wastewater degradation was followed in terms of chemical oxygen demand reduction. In the optimization, the correlation coefficients for the model (R2) were 0.985 and 0.990 for Fenton and photo-Fenton treatments respectively. Optimum reaction conditions at pH ¼ 3 and temperature ¼ 298 K were [H2O2] ¼ 73.5 mM and [Fe(II)] ¼ 1.79 mM. The combination of Fenton, Fenton-like and photon-Fenton reactions has been proved to be highly effective for the treatment of such a type of wastewaters, and several advantages for this technique arise from the study. Under optimum conditions, 120 min of treatment resulted in a 62.9% and 76.3% reduction in chemical oxygen demand after Fenton and photo-Fenton treatments respectively
机译:这项工作的重点是在实验室规模的实验中使用Fenton试剂和UV辐射处理来自西班牙一家纺织品制造商的实际染料废水。响应面方法和23因子设计用于评估优化氧化过程时考虑的三个独立变量的影响:温度,Fe(II)和H2O2浓度,用于化学氧染色过程中产生的纺织废水在pH值为¼的条件下,其对1705 mg L_1 O2的需求量为3。在优化中,对于Fenton和光Fenton处理,模型(R2)的相关系数分别为0.985和0.990。在pH¼3和温度¼298 K下的最佳反应条件为[H2O2]¼73.5 mM和[Fe(II)]¼1.79 mM。 Fenton,类Fenton反应和光子-Fenton反应的组合已被证明对这类废水的处理非常有效,这项技术从中获得了许多好处。在最佳条件下,经过120分钟的处理后,芬顿和光芬顿处理分别减少了62.9%和76.3%的化学需氧量

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