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Optimization of Acid Orange 7 Degradation in Heterogeneous Fenton-like Reaction Using Fe3-xCoxO4 Catalyst

机译:使用Fe3-XCOxO4催化剂优化酸橙7酸橙7型降解反应

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The oxidation process such as heterogeneous Fenton and/or Fenton-like reactions is considered as an effective and efficient method for treatment of dye degradation.In this study,the degradation of Acid Orange 7(AO7)was investigated by using Fe3-xCoxO4 as a heterogeneous Fenton-like catalyst.Response surface methodology(RSM)was used to optimize the operational parameters condition and the interaction of two or more parameters.The parameter studies were catalyst dosage(X1),pH(X2)and H2O2 concentration(X3)towards A07 degradation.Based on analysis of variance(ANOVA),the derived quadratic polynomial model was significant whereby the predicted values matched the experimental values with regression coefficient of R~ = 0.9399.The optimum condition for AO7 degradation was obtained at catalyst dosage of 0.84 g/L,pH of 3 and H2O2 concentration of 46.70 mM which resulted in 86.30% removal of A07 dye.These findings present new insights into the influence of operational parameters in the heterogeneous Fenton-like oxidation of AO7 using Fe3-xCoxO4 catalyst.
机译:氧化过程,例如异构芬顿和/或类芬顿反应被认为是用于治疗色素的degradation.In本研究的有效和高效的方法,酸性橙7(AO7)的降解通过使用的Fe3-xCoxO4作为调查异构类芬顿catalyst.Response面法(RSM)用于优化运行参数条件和两个或更多个参量。参数研究是催化剂用量(X1),pH值(X2)和H 2 O 2浓度(X3)朝向的相互作用A07 degradation.Based上方差分析(ANOVA),派生二次多项式模型是显著由此预测值相匹配,其中R的回归系数的实验值〜=在0.84克催化剂用量得到了用于AO7降解0.9399.The最佳条件/ L,46.70毫3和H 2 O 2浓度,这导致了除去A07 dye.These发现本新的见解86.30%到操作参数在heterogeneo影响的pH值我们芬顿喜欢使用的Fe3-xCoxO4催化剂AO7的氧化。

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