Nesrine Turki, N. Boujelben, Zaineb Bakari, J. Bouzid
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引用次数: 1
摘要
通讯作者:Nesrine Turki环境与生态技术实验室,Sfax-Tunisia大学,ENIS, Street of Soukra km 3.5。摘要:本研究采用扫描电镜(SEM)、x射线衍射(xrd)和BET表面积(SBET)等方法对吸附剂进行表征。响应面法(RSM)被认为是评估Ni吸附处理效果的好方法,并采用BoxBehnken设计同时考察不同实验变量(pH、吸附剂用量、接触时间)的影响。实验结果表明,吸附效率高。统计分析显示相关系数高(R值0.9578)。结果表明,吸附效率随着接触时间和吸附剂用量的增加而提高。在最佳条件下,获得了最佳效果。接触时间为120min,吸附剂用量为0.5 mg L时吸附量最大。观测值和预测值之间的相似性维持了模型估计吸附过程的相关性。结果表明,Langmuir和Freundlich等温线模型适用于镍吸附过程(R值为0.92 ~ 0.99)。结果表明,吸附效率随温度升高而升高。大多数情况下,突尼斯粘土可以被评价为从水溶液中吸附镍的强力吸附剂。
Use of Response Surface Methodology for Optimization of Nickel Adsorption in an Aqueous Solution by Clay
Corresponding Author: Nesrine Turki Laboratory of Environment and Ecotechnology, University of Sfax-Tunisia, ENIS, Street of Soukra km 3.5. BP 1173 CP 3038, Sfax, Tunisia Email: nesrineturkighorbel@gmail.com Abstract: In this study, Scanning Electron Microscopy (SEM), X-ray diffraction and BET surface area (SBET) methods were employed to characterize the adsorbent. Response Surface Methodology (RSM) was consider as a good method to assess Ni adsorption treatment and BoxBehnken design was used to examine simultaneous the effects of different experimental variables (pH, adsorbent dosage, contact time). Experimental results showed high adsorption efficiency. Statistical analysis showed a high correlation coefficient (R value 0.9578). It was showed that adsorption efficiency raised as contact time and adsorbent dosage raised. The best results were acquired with optimum conditions. A contact time of 120 min and an adsorbent dose of 0.5 mg L give the highest adsorption capacity. The similarity between observed and predicted values sustains the relevance of the model to estimate the adsorption process. It was suggested that Langmuir and Freundlich isotherm models fitted for Nickel adsorption process (R values ranged between 0.92 and 0.99). The results showed that adsorption efficiency increased as temperature increase. Mostly, Tunisian clay may be assessed as powerful adsorbent for the adsorption of Nickel from aqueous solution.