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Degradation of naproxen by combination of Fenton reagent and ultrasound irradiation: optimization using response surface methodology

机译:Fenton试剂和超声辐射相结合降解萘普生:使用响应面方法进行优化

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A central composite factorial design methodology was employed to optimize the degradation of naproxen (NPX) by the combination of Fenton reagent and ultrasound (US) irradiation. In this study, the variables considered for the process optimization were the hydrogen peroxide, ferrous ion and NPX initial concentrations, while ultrasonic power amplitude was adjusted at 90% and initial pH was 3. An appropriate quadratic model was developed in order to plot the response surface and contour curves. Optimum dosage of Fenton reagent for NPX removal was found to be hydrogen peroxide concentration = 9.98 mmol L~(-1), ferrous ion concentration = 4.83 mg L~(-1) while NPX concentration was equal to 20 mg L~(-1). A.degradation efficiency of 100% was achieved within 10 min under US.
机译:通过Fenton试剂和超声(US)辐照的组合,采用中央复合因子设计方法来优化萘普生(NPX)的降解。在这项研究中,为优化工艺而考虑的变量是过氧化氢,亚铁离子和NPX的初始浓度,而超声功率振幅被调整为90%,初始pH为3。建立了适当的二次模型以绘制响应曲线表面和轮廓曲线。发现Fenton试剂用于NPX去除的最佳剂量为过氧化氢浓度= 9.98 mmol L〜(-1),亚铁离子浓度= 4.83 mg L〜(-1)而NPX浓度等于20 mg L〜(-1 )。在美国条件下,在10分钟内A.的降解效率达到100%。

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