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Desorption of Phenol from Lantana camara, Forest waste: Optimization using Response Surface Methodology and Kinetic Studies

机译:来自Lantana Camara的苯酚的解吸,森林垃圾:使用响应面方法和动力学研究优化

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In the present work, desorption studies to recover the adsorbed phenol from HCl treated adsorbent were carried out with ethanol solution. The experimental conditions like ethanol concentration, desorption time and temperature were optimized using response surface methodology. From the central composite design, a quadratic model was developed to relate the process variables to the percentage desorption as the response. From the analysis of variance (ANOVA), the most significant factor on the response was determined. The predicted percentage desorption values from the model was in good agreement with the experimental values. Therefore to understand the mechanism involved in desorption of phenol, desorption kinetics were performed at optimum conditions. The modelling of desorption data were done using pore-diffusion and first-order kinetic model. The data followed first-order kinetic model better than the pore-diffusion model. The percentage desorption was found to be 82.1% showing that ethanol is effective in desorbing phenol from the adsorbent.
机译:在本工作中,用乙醇溶液进行从HCl处理过吸附剂中回收吸附苯酚的解吸研究。使用响应表面方法优化乙醇浓度,解吸时间和温度等实验条件。从中央复合设计,开发了一种二次模型,以将过程变量与作为响应的百分比百分比。根据方差分析(ANOVA),确定了响应的最重要因素。来自模型的预测百分比解吸值与实验值吻合良好。因此,为了了解苯酚解吸所涉及的机制,在最佳条件下进行解吸动力学。使用孔隙扩散和一阶动力学模型进行解吸数据的建模。数据之后的数据比孔隙漫射模型更好。发现解吸百分比为82.1%,显示乙醇是从吸附剂中解吸的苯酚中有效的。

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