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XAD-4树脂对水溶液中4-氯苯酚的吸附:等温线、动力学及热力学分析

Adsorption of 4-chlorophenol from aqueous solutions by xad-4 resin: isotherm, kinetic, and thermodynamic analysis.

作者信息

Bilgili M Sinan

机构信息

Yildiz Technical University, Faculty of Civil Engineering, Environmental Engineering Department, 34349 Istanbul, Turkey.

出版信息

J Hazard Mater. 2006 Sep 1;137(1):157-64. doi: 10.1016/j.jhazmat.2006.01.005. Epub 2006 Feb 17.

Abstract

Removal of 4-chlorophenol (4-CP) from synthetic aqueous solutions through adsorption on Amberlite XAD-4 resin, a non-ionic macroreticular resins, under batch equilibrium experimental conditions at 298, 308 and 318K was investigated. It is necessary to propose a suitable model to a better understanding on the mechanism of 4-CP adsorption. For this purpose, Langmiur, Freundlich, Toth, and Redlich-Peterson (RP) isotherm models were compared. The two and three parameters in the adopted adsorption isotherm models were determined by the help of MATLAB package program. It was determined that best fitted adsorption isotherm models were obtained to be in the order: Redlich-Peterson>Langmuir>Toth>Freundlich isotherms. The pseudo-second-order kinetic model provided the best correlation to the experimental results. Results of the intra-particle diffusion model show that the pore diffusion is not the only rate limiting step. The lower correlation of the data to the Bangham's equation also represents that the diffusion of the adsorbate into pores of the sorbent is not the only rate-controlling step. The thermodynamic constants of adsorption phenomena; DeltaG degrees, DeltaH degrees, and DeltaS degrees were found as -4.17 (at 298K) kJ/mol, -42.01 kJ/mol, and -0.127 kJ/(mol K), respectively. The results showed that adsorption of 4-CP on Amberlite XAD-4, a nonionic polymeric resin was exothermic and spontaneous.

摘要

研究了在298K、308K和318K的间歇平衡实验条件下,通过吸附在非离子大孔树脂Amberlite XAD-4树脂上,从合成水溶液中去除4-氯苯酚(4-CP)的情况。有必要提出一个合适的模型,以便更好地理解4-CP的吸附机制。为此,比较了Langmiur、Freundlich、Toth和Redlich-Peterson(RP)等温线模型。采用的吸附等温线模型中的两个和三个参数借助MATLAB软件包程序确定。结果表明,最佳拟合的吸附等温线模型顺序为:Redlich-Peterson>Langmuir>Toth>Freundlich等温线。准二级动力学模型与实验结果的相关性最好。颗粒内扩散模型的结果表明,孔扩散不是唯一的速率限制步骤。数据与Bangham方程的较低相关性也表明,吸附质向吸附剂孔内的扩散不是唯一的速率控制步骤。吸附现象的热力学常数;ΔG°、ΔH°和ΔS°分别为-4.17(298K时)kJ/mol、-42.01 kJ/mol和-0.127 kJ/(mol·K)。结果表明,4-CP在非离子聚合物树脂Amberlite XAD-4上的吸附是放热且自发的。

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