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Optimization of PET Glycolysis Process by Response Surface Methodological Approach: A Two-Component Modelling Using Glycolysis Time and Temperature

机译:响应面方法优化PET糖酵解工艺:糖酵解时间和温度的两组分建模

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Response surface methodology (RSM) was used for predicting the optimal condition of glycolysis time and temperature in the recycling of PET scrap. Central composite rotatable design (CCRD) for two variables at four levels was chosen as the experimental design. The data obtained from measurement of properties were fitted as a two variable second-order equation and were plotted as 3D surface plots using programme developed in MATLAB v.5. Analysis of variance (ANOVA) was used to evaluate the validity of model. The optimum operating conditions for glycolysis time and temperature were 6.5 h and 180°C, respectively. Under these optimal conditions, the hydroxyl value and glycolysis conversion percentage was 38.14 mgKOH/g and 95%, respectively, at the 0.97 desirability level, whereas the acid value and number average molecular weight (????) at the same desirability level were 12.2 mgKOH/g and 695 g/mol, respectively.
机译:响应面方法(RSM)用于预测PET废料回收中糖酵解时间和温度的最佳条件。实验设计选择了四个级别的两个变量的中央复合可旋转设计(CCRD)。通过性能测量获得的数据拟合为两个变量的二阶方程,并使用MATLAB v.5中开发的程序将其绘制为3D表面图。方差分析(ANOVA)用于评估模型的有效性。糖酵解时间和温度的最佳操作条件分别为6.5 h和180°C。在这些最佳条件下,羟值和糖酵解转化百分率在0.97的理想水平下分别为38.14 / KOH / g和95%,而在相同的理想水平下的酸值和数均分子量(???)为。分别为12.2 KOH / g和695 g / mol。

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