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首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Modelling of Adsorption of Zinc and Silver Ions on Analcime and Modified Analcime Zeolites Using Central Composite Design
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Modelling of Adsorption of Zinc and Silver Ions on Analcime and Modified Analcime Zeolites Using Central Composite Design

机译:中央复合设计模拟锌和银离子在苯甲醛和改性的苯甲醛沸石上的吸附。

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摘要

In this study, Response Surface Methodology (RSM) using Central Composite Design (CCD) was employed to optimize the conditions of independent variables (adsorption time and ion solution concentration) for the removal of Zinc (II) and Ag ions from the aqueous solutions using analcime and modified analcime zeolites (Fe-ANA and Ni-ANA) as efficient and low cost adsorbent. The operation conditions were contact time of 1-13 h and ion concentration of 25-250 ppm at ambient temperature. Under these, conditions the response (the adsorption capacity of zinc (II) and Ag ions) was fitted by a quadratic polynomial regression model and linear model analysis in five-level-two-factor CCD using Design Expert software. The optimal conditions (high removal efficiency) for zinc (II) and Ag+ adsorption were achieved. The analysis of variance demonstrated that ion concentration effect was found to be significant in the adsorption process. Moreover, actual and predicted response plot of ion adsorption in zeolites were investigated.
机译:在这项研究中,采用采用中央复合设计(CCD)的响应表面方法(RSM)来优化自变量的条件(吸附时间和离子溶液浓度),以从水溶液中去除锌(II)和银离子。芳烃和改性的芳烃沸石(Fe-ANA和Ni-ANA)是高效且低成本的吸附剂。操作条件是在环境温度下接触时间为1-13小时,离子浓度为25-250 ppm。在这些条件下,通过二次多项式回归模型并使用Design Expert软件在五能级两因素CCD中进行线性模型分析,拟合了响应(锌(II)和Ag离子的吸附容量)。获得了锌(II)和Ag +吸附的最佳条件(高去除效率)。方差分析表明,离子浓度效应在吸附过程中很明显。此外,研究了实际和预测的离子吸附在沸石中的响应图。

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