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A Comparison of Central Composite Design and Taguchi Method for Optimizing Fenton Process

机译:中央复合设计与Taguchi方法优化Fenton过程的比较

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摘要

In the present study, a comparison of central composite design (CCD) and Taguchi method was established for Fenton oxidation.Dyeini, Dye : Fe+2, H2O2 : Fe+2, and pH were identified control variables while COD and decolorization efficiency were selected responses.L9orthogonal array and face-centered CCD were used for the experimental design. Maximum 99% decolorization and 80% COD removal efficiency were obtained under optimum conditions.Rsquared values of 0.97 and 0.95 for CCD and Taguchi method, respectively, indicate that both models are statistically significant and are in well agreement with each other. Furthermore, Prob >Fless than 0.0500 and ANOVA results indicate the good fitting of selected model with experimental results. Nevertheless, possibility of ranking of input variables in terms of percent contribution to the response value has made Taguchi method a suitable approach for scrutinizing the operating parameters. For present case, pH with percent contribution of 87.62% and 66.2% was ranked as the most contributing and significant factor. This finding of Taguchi method was also verified by 3D contour plots of CCD. Therefore, from this comparative study, it is concluded that Taguchi method with 9 experimental runs and simple interaction plots is a suitable alternative to CCD for several chemical engineering applications.
机译:在本研究中,确定用于芬顿氧化的中央复合设计(CCD)和TAGUCHI方法的比较。染料,染料:Fe + 2,H 2 O 2:Fe + 2和pH,鉴定了COD和脱色效率的控制变量响应.19正常阵列和面心式CCD用于实验设计。在最佳条件下,最大99%的脱色和80%COD去除效率。分别为CCD和TAGUCHI方法的0.97和0.95的值,表明两种型号都具有统计学意义,彼此同步。此外,Prob> Fless比0.0500和Anova结果表明所选模型与实验结果的良好配合。然而,根据对响应值的贡献百分比对输入变量进行排序的可能性使得TBUCHI方法是用于仔细审查操作参数的合适方法。对于目前的情况来说,pH值为87.62%和66.2%的pH值被排名为最大的贡献和重大因素。 CCD的3D轮廓图也验证了Taguchi方法的这种发现。因此,从该比较研究中,得出结论,具有9个实验运行和简单的相互作用图的Taguchi方法是用于多种化学工程应用的CCD的合适替代方案。

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