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Modeling and optimization process parameters of acid activation of bentonite by response surface methodology

机译:响应面法建模和优化膨润土酸活化工艺参数

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摘要

The effect of acid activation on the textural properties of a bentonite from Serbia was investigated using response surface methodology. The influence of activation parameters (temperature, time, acid normality, solid-to-liquid ratio and stirring rate) on the specific surface area, pore volume, pore diameter and bulk density of the activated bentonite samples has been studied using response surface methodology based on central composite rotatable design (CCRD). The specific surface areas of the activated samples were chosen for the selected process response.rnThe quantitative relationship between the specific surface areas and different levels of the quoted factors was used to determine the optimized levels of these factors by CCRD. The analysis of the variance of the quadratic model demonstrates that the response surface methodology was one of the suitable methods to optimize the best operating conditions to maximize the specific surface area of the bentonite. Three dimensional plots are used to demonstrate the relations between the specific surface areas and the paired factors (when the other factors was kept constant) describing the behavior of bentonite in the process of acid activation. The specific surface area and the textural properties of the acid-activated bentonite are strongly affected by the process parameters. The optimum conditions to obtain the maximum specific surface area of acid-activated bentonite were as follows: temperature 90 ℃, acid normality 4.5, stirring rate 450 rpm, solid-to-liquid ratio of 1:4.5 and duration 3 h. Under these conditions, the experimental values agreed with the values predicted by the analysis of variance, indicating a high fitting accuracy (R~2 = 0.927) of the model used and the success of the response surface methodology in optimizing the process parameters of the acid activation of bentonite.
机译:使用响应表面方法研究了酸活化对来自塞尔维亚的膨润土的质构性质的影响。利用响应面法研究了活化参数(温度,时间,酸的正构性,固液比和搅拌速率)对活化的膨润土样品的比表面积,孔体积,孔径和堆积密度的影响。中央复合旋转设计(CCRD)。选择活化样品的比表面积以用于所选择的过程响应。在比表面积和不同水平的引证因子之间的定量关系被用于通过CCRD确定这些因子的优化水平。二次模型方差的分析表明,响应表面方法是优化最佳操作条件以最大化膨润土比表面积的合适方法之一。使用三维图来说明比表面积与成对因素(当其他因素保持恒定时)之间的关系,这些因素描述了膨润土在酸活化过程中的行为。酸活化膨润土的比表面积和质构性质受工艺参数的强烈影响。获得酸活化膨润土最大比表面积的最佳条件如下:温度90℃,酸正性4.5,搅拌速度450 rpm,固液比1:4.5,持续时间3 h。在这些条件下,实验值与通过方差分析预测的值相符,表明所用模型的拟合精度较高(R〜2 = 0.927),并且响应面方法成功地优化了酸的工艺参数膨润土的活化。

著录项

  • 来源
    《Applied clay science》 |2010年第2期|154-158|共5页
  • 作者单位

    IChTM-Department of Catalysis and Chemical Engineering,University of Belgrade, Njegoseva 12, Belgrade, Republic of Serbia;

    IChTM-Department of Catalysis and Chemical Engineering,University of Belgrade, Njegoseva 12, Belgrade, Republic of Serbia;

    IChTM-Department of Catalysis and Chemical Engineering,University of Belgrade, Njegoseva 12, Belgrade, Republic of Serbia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bentonite; specific surface area; statistical design; analysis of variance;

    机译:膨润土比表面积;统计设计;方差分析;
  • 入库时间 2022-08-17 13:55:25

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