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Optimization of combined mechanical activation-roasting parameters of titania slag using response surface methodology

机译:响应面法优化二氧化钛渣综合机械活化焙烧参数

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In this paper, the effects of mechanical activation and roasting on treating titania slag process were systematically investigated. Several operating parameters as independent variables, namely activation time, temperature and roasting time, and synthetic rutile content as dependent variable, were optimized using response surface methodology (RSM) with a central composite design (CCD). A second-degree equation for independent and dependent variables was computed and used to create the response surface and contours. It showed that linear effect of activation time, temperature and roasting time, interaction effect between activation time and temperature, square effect of activation time showed influence on synthetic rutile content. According to results from analysis of variance (ANOVA), the value of the determination coefficient (R~2 = 0.9767) indicates that the model was a good fit that 97.67% of the variation could be explained well by the model. The value of the adjusted determination coefficient (adj.R~2 = 0.9558) was also very high to advocate for a high significance of the model. The predicted synthetic rutile content after process optimization was found to agree satisfactory with the experimental values. The optimum experiment parameters were found as follows: activation time of 170.42 min, temperature of 1149.28 °C, and roasting time of 20.79 min. The specific polymorphic phase transition of titania slag before and after combination mechanical activation and roasting process were obtained and characterized by X-ray Diffraction (XRD), respectively.
机译:本文系统地研究了机械活化和焙烧对二氧化钛渣处理的影响。使用带有中央复合设计(CCD)的响应面方法(RSM)优化了几个作为独立变量的操作参数,即激活时间,温度和烘烤时间以及合成金红石含量作为因变量。计算了用于自变量和因变量的二阶方程,并将其用于创建响应曲面和轮廓。结果表明,活化时间,温度和焙烧时间的线性效应,活化时间与温度的相互作用,活化时间的平方效应对合成金红石含量有影响。根据方差分析(ANOVA)的结果,确定系数的值(R〜2 = 0.9767)表明该模型非常适合,该模型可以很好地解释97.67%的变化。调整后的确定系数的值(adR.R〜2 = 0.9558)也很高,以提倡该模型的高意义。发现工艺优化后的预测合成金红石含量与实验值相符。最佳实验参数如下:活化时间为170.42分钟,温度为1149.28°C,焙烧时间为20.79分钟。获得了二氧化钛渣在机械活化和焙烧过程组合之前和之后的特定多态相变,并分别通过X射线衍射(XRD)表征。

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