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Optimization of Horseradish Peroxidase Catalytic Degradation for 2-Methyl-6-Ethylaniline Removal Using Response Surface Methodology

机译:用响应面法测定2-甲基-6-乙基苯胺去除的辣根过氧化物酶催化降解的优化

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For optimizing the reaction conditions of 2-methyl-6-ethylaniline (MEA) degradation catalyzed by horseradish peroxidase (HRP), a response surface methodology with three factors and three levels was used in this research to establish a regression model, a ternary quadratic polynomial, in order to analyze temperature, H 2 O 2 concentration and pH effects on MEA removal efficiency. The results showed that the regression model was significant (p 0.0001), fitted well with experimental data and had a high degree of reliability and accuracy, and the data were reasonable with low errors. By analyzing interactions and solving the regression model, the maximum MEA removal efficiency was 97.90%, and the optimal conditions were defined as follows: pH 5.02, H 2 O 2 concentration 13.41mM, and temperature 30.95 °C. Under the optimal conditions, the average MEA removal efficiency obtained from the experiments was 97.56%. This research can provide reference for the treatment of actual acetochlor industrial wastewater.
机译:为了优化由辣根过氧化物酶(HRP)催化的2-甲基-6-乙基苯胺(MEA)降解的反应条件,在该研究中使用了三种因素和三个水平的响应表面方法,以建立一个重回模型,是三元二次多项式,为了分析温度,H 2 O 2浓度和pH对MEA去除效率的影响。结果表明,回归模型很大(P <0.0001),适用于实验数据,具有高度的可靠性和准确性,数据具有低误差。通过分析相互作用和解决回归模型,最大的MEA去除效率为97.90%,最佳条件定义如下:pH 5.02,H 2 O 2浓度13.41mm,温度30.95℃。在最佳条件下,从实验中获得的平均MEA去除效率为97.56%。该研究可以为治疗实际的乙酰影工业废水提供参考。

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