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Interactions between photodegradation components

机译:光降解组分之间的相互作用

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Background The interactions of p-cresol photocatalytic degradation components were studied by response surface methodology. The study was designed by central composite design using the irradiation time, pH, the amount of photocatalyst and the p-cresol concentration as variables. The design was performed to obtain photodegradation % as actual responses. The actual responses were fitted with linear, two factor interactions, cubic and quadratic model to select an appropriate model. The selected model was validated by analysis of variance which provided evidences such as high F-value (845.09), very low P-value (<.0.0001), non-significant lack of fit, the coefficient of R-squared (R2?=?0.999), adjusted R-squared (Radj2?=?0.998), predicted R-squared (Rpred2?=?0.994) and the adequate precision (95.94). Results From the validated model demonstrated that the component had interaction with irradiation time under 180 min of the time while the interaction with pH was above pH 9. Moreover, photocatalyst and p-cresol had interaction at minimal amount of photocatalyst (< 0.8 g/L) and 100 mg/L p-cresol. Conclusion These variables are interdependent and should be simultaneously considered during the photodegradation process, which is one of the advantages of the response surface methodology over the traditional laboratory method.
机译:背景技术通过响应面法研究了对甲酚光催化降解组分之间的相互作用。该研究是通过中央复合设计来设计的,其中使用了照射时间,pH,光催化剂的量和对甲酚浓度作为变量。进行设计以获得光降解%作为实际响应。实际响应通过线性,两因素相互作用,三次和二次模型进行拟合,以选择合适的模型。通过方差分析验证了所选模型的有效性,该分析提供了诸如高F值(845.09),非常低的P值(<.0.0001),不显着缺乏拟合度,R平方系数(R2?= (0.999),调整后的R平方(Radj2?=?0.998),预测的R平方(Rpred2?=?0.994)和足够的精度(95.94)。结果从验证的模型表明,该组分在180分钟的时间内与照射时间发生相互作用,而与pH的相互作用高于pH9。此外,光催化剂和对甲酚在最小量的光催化剂(<0.8 g / L)下具有相互作用。 )和100 mg / L对甲酚。结论这些变量是相互依存的,在光降解过程中应同时考虑,这是响应面方法相对于传统实验室方法的优势之一。

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