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Optimization of Fenton oxidation process for treatment of hexogeon industrial wastewater using response surface methodology

机译:响应面法优化Fenton氧化工艺处理己酮工业废水。

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Fenton oxidation technology was applied to treat hexogeon industrial wastewater and response surface methodology was used to optimize the effects of the FeSO4 concentration, H2O2 concentration, pH value, and temperature. A quadratic model was obtained as the result of this design. In the optimization, the coefficient of variation is only 3.17%, indicating a good precision and reliability of the experimental. The coefficient of association (R-2) and adj-R-2 for quadratic model were evaluated quite satisfactorily as 0.98 and 0.96, respectively. The predicted optimum conditions were determined as 763 mg L-1 of FeSO4 concentration, 107 mg L-1 of H2O2 concentration, 2.64 of pH, and 19 degrees C with 83.5% of chemical oxygen demand removal. The experimental result was 82.92% under optimizing reaction factors.
机译:Fenton氧化技术用于处理六方工业废水,响应面方法用于优化FeSO4浓度,H2O2浓度,pH值和温度的影响。作为该设计的结果,获得了二次模型。在优化中,变异系数仅为3.17%,表明实验具有良好的精度和可靠性。二次模型的关联系数(R-2)和adj-R-2分别令人满意地评估为0.98和0.96。确定预测的最佳条件为763 mg L-1的FeSO4浓度,107 mg L-1的H2O2浓度,2.64的pH值和19摄氏度,并去除了83.5%的化学需氧量。在优化反应因子的条件下,实验结果为82.92%。

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