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基于波兰尼模型的萘从水溶液中吸附到非极性聚合物吸附剂上的研究

Polanyi-based models for the adsorption of naphthalene from aqueous solutions onto nonpolar polymeric adsorbents.

作者信息

Long Chao, Li Aimin, Wu Haisuo, Liu Fuqiang, Zhang Quanxing

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210093, PR China.

出版信息

J Colloid Interface Sci. 2008 Mar 1;319(1):12-8. doi: 10.1016/j.jcis.2007.10.052. Epub 2007 Nov 12.

Abstract

In this research, naphthalene was adopted as the representative model compound of PAHs, and static adsorption of naphthalene from aqueous solution onto three commercial polymeric adsorbents with different pore structure was investigated. Nonlinear isotherms models, i.e., Freundlich, Langmuir, and Polanyi-Dubinin-Manes (PDM) models were tested to fit experimental data, and the experimental data were found to fit well by the PDM model. Through both isotherm modeling and constructing "characteristic curve," Polanyi theory was useful to describe the adsorption process of naphthalene by polymeric adsorbents, providing evidence that a micropore filling phenomenon was involved during the adsorption process. In addition, a good linear correlation was obtained between the naphthalene adsorption capacities and the micropore volume of adsorbents (Vmicro), whereas no linear relationship was found between the naphthalene adsorption capacities and the specific surface area of adsorbents. Based on the PDM model, the micropore volumes of adsorbents was introduced to normalize the equilibrium adsorbed volume (qv), plots of qv/V(micro) vs adsorption potential density for naphthalene on three different polymeric adsorbents were collapsed to a single correlation curve, which would be of great benefit to predict the adsorption capacity of adsorbent for the purpose of adsorption engineering design.

摘要

本研究采用萘作为多环芳烃的代表性模型化合物,研究了萘从水溶液中在三种具有不同孔结构的商业聚合物吸附剂上的静态吸附。测试了非线性等温线模型,即Freundlich、Langmuir和Polanyi-Dubinin-Manes(PDM)模型来拟合实验数据,发现实验数据与PDM模型拟合良好。通过等温线建模和构建“特征曲线”,Polanyi理论有助于描述聚合物吸附剂对萘的吸附过程,这为吸附过程中涉及微孔填充现象提供了证据。此外,萘吸附容量与吸附剂的微孔体积(Vmicro)之间获得了良好的线性相关性,而萘吸附容量与吸附剂的比表面积之间未发现线性关系。基于PDM模型,引入吸附剂的微孔体积对平衡吸附体积(qv)进行归一化,三种不同聚合物吸附剂上萘的qv/V(micro)对吸附势密度的图合并为一条单一的相关曲线,这将对预测吸附剂的吸附容量以用于吸附工程设计非常有帮助。

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