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Application of Taguchi’s experimental design method for optimization of Acid Red 18 removal by electrochemical oxidation process

机译:Taguchi实验设计方法在电化学氧化过程中酸红18优化优化的应用

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Background: Electro-oxidation is developed as an electrochemical method to overcome the problems of the conventional decolorization technologies and is an appropriate alternative for the treatment of colored wastewater from various industries. The purpose of this study was to evaluate the efficiency of the electrochemical oxidation process in removal of chemical oxygen demand (COD) and Acid Red 18 (AR18) dye from aqueous solutions.Methods: In this research, a laboratory scale of electro-coagulation reactor for the treatment of synthetic wastewater was made and studied. The effects of different variables including pH, current density, dye concentration, and electrolysis time were investigated. The experiment steps were designed by Design-Expert 10 software using the selected variables. Finally, the dye and COD analysis was performed by spectrophotometer. The optimization was performed using Taguchi fractional factorial design during the removal of dye and COD.Results: Maximum removal of dye (89%) and COD (72.2%) were obtained at pH=3, current density=20 mA/cm2, initial dye concentration=100 mg/L, and reaction time=45 min. ANOVA test showed a significant relationship between statistical model and test data. Also, the results indicate that the distribution of the residues of the model was normal.Conclusion: By designing experiments through Taguchi method, the removal process will be optimized and by decreasing the number of experiments, the optimal conditions for pollutant removal will be prepared. The results suggest that the Electro-oxidation system is a very suitable technique for the enhancement of wastewater treatment.
机译:背景:电氧化作为克服传统脱色技术问题的电化学方法,是一种适当的各种行业彩色废水的适当替代方案。本研究的目的是评估从水溶液中除去化学需氧量(COD)和酸红18(AR18)染料的电化学氧化过程的效率。方法:在本研究中,制备了用于处理合成废水的电凝固反应器的实验室规模和研究。研究了包括pH,电流密度,染料浓度和电解时间的不同变量的影响。使用所选变量设计 - 设计专家10软件设计了实验步骤。最后,通过分光光度计进行染料和COD分析。在去除染料和鳕鱼期间使用Taguchi分数阶段设计进行优化。结果:在pH = 3,电流密度= 20mA / cm 2,初始染料浓度= 100mg / L,最大地去除染料(89%)和鳕鱼(72.2%),初始染料浓度= 45mm。 ANOVA测试显示统计模型与测试数据之间的重要关系。此外,结果表明模型的残留物分布正常。结论:通过通过Taguchi方法设计实验,将优化去除过程,通过降低实验次数,将制备污染物去除的最佳条件。结果表明,电氧化系统是一种非常合适的加强废水处理技术。

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