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Enhanced adsorption of p-nitroaniline from water by a carboxylated polymeric adsorbent

机译:羧基化聚合物吸附剂增强了对硝基苯胺从水中的吸附

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In the present study a carboxylated polymeric adsorbent ZK-1 was synthesized for enhanced removal of p-nitroaniline (PNA) from aqueous solution. A commercial polymeric adsorbent XAD-4 was selected for comparison purpose. Characterization of ZK-1 was characterized by infrared spectroscopy and pore size distribution analysis. Experimental results showed that PNA adsorption onto ZK-1 was greatly enhanced due to its micropore structure and the carboxylic group introduced onto polymeric matrix. Different pH-dependent adsorption tendency of PNA onto XAD-4 and ZK-1 was observed mainly due to the role of carboxyl group on the ZK-1 surface. Isotherms of PNA adsorption onto ZK-1 and XAD-4 could be represented by Langmuir model reasonably. More favorable PNA adsorption onto ZK-1 than XAD-4 was further demonstrated by thermodynamic ananlysis. Kinetic studies demonstrated that PNA uptake onto ZK-1 followed the pseudo-second order model, while that onto XAD-4 would be more suitably represented by the pseudo-first order model. Column adsorption runs indicated that PNA could be completely removed from aqueous system by ZK-1. Moreover, efficient regeneration of the spent adsorbent ZK-1 was readily achieved by ethanol and water for its repeated use.
机译:在本研究中,合成了羧基化的聚合物吸附剂ZK-1,用于增强从水溶液中去除对硝基苯胺(PNA)的能力。为了比较目的,选择了商业聚合物吸附剂XAD-4。 ZK-1的表征通过红外光谱和孔径分布分析进行表征。实验结果表明,由于PNA的微孔结构和将羧基引入聚合物基体,PNA对ZK-1的吸附大大增强。观察到PNA在XAD-4和ZK-1上具有不同的pH依赖性吸附趋势,这主要归因于ZK-1表面上的羧基作用。 Langmuir模型可以合理地表示PNA在ZK-1和XAD-4上的吸附等温线。热力学分析进一步证明了PNA在XK上的吸附优于XAD-4。动力学研究表明,ZK-1对PNA的吸收遵循伪二级模型,而XAD-4对PNA的吸收则更适合采用伪一级模型。柱吸附实验表明,ZK-1可以将PNA从水性体系中完全去除。而且,通过重复使用乙醇和水很容易实现废吸附剂ZK-1的有效再生。

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