School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai, 200444, PR China.
School of Environmental and Chemical Engineering, Shanghai University, 333 Nanchen Road, Shanghai, 200444, PR China.
Chemosphere. 2020 Jun;248:126102. doi: 10.1016/j.chemosphere.2020.126102. Epub 2020 Feb 3.
A novel adsorbent, the uniform fiber ball (UFB) loaded with polypyrrole (UFB-PPy), was synthesized for Cr(VI) removal from water in this paper. The structure of the UFB and UFB-PPy were characterized by SEM, EDS, FT-IR, BET, XPS and TG. The adsorption properties of UFB-PPy towards Cr(VI) were investigated by the effects of temperature, initial concentration of Cr(VI), interfering ions and contact time in batch experiments, the isothermal models (Langmuir, Freundlich and Temkin) and the kinetic models (Pseudo first-order kinetic, Pseudo second-order kinetic and Intra-particle diffusion models) were used to describe the adsorption behavior. The effects of the initial concentration and flow rate of the Cr(VI) solution in the column experiments were also studied, and the dynamic models (Yoon-Nelson, Adams-Bohart and Wolborska model) were applied to predict the adsorption performance. The Cr(VI) removal mechanism of UFB-PPy was revealed by studying the effect of pH on adsorption, testing of Cl, and analyzing the XPS. The results showed that UFB-PPy exhibited excellent adsorption properties for Cr(VI) both in batch and column adsorption. The possible adsorption mechanism involved electrostatic attraction, ion exchange and reduction. Conveniently, the chromium resources can be recovered with the form of high-purity CrO by simple calcination of Cr(VI)-captured UFB-PPy (UFB-PPy-Cr).
本文合成了一种新型吸附剂——负载聚吡咯的均匀纤维球(UFB-PPy),用于从水中去除 Cr(VI)。通过 SEM、EDS、FT-IR、BET、XPS 和 TG 对 UFB 和 UFB-PPy 的结构进行了表征。通过批次实验研究了温度、Cr(VI)初始浓度、干扰离子和接触时间对 UFB-PPy 吸附 Cr(VI)的影响,采用等温模型(朗缪尔、弗伦德利希和滕金)和动力学模型(拟一级动力学、拟二级动力学和内扩散模型)来描述吸附行为。还研究了 Cr(VI)溶液在柱实验中的初始浓度和流速的影响,并应用动力学模型(Yoon-Nelson、Adams-Bohart 和 Wolborska 模型)来预测吸附性能。通过研究 pH 值对吸附的影响、Cl 的测试和 XPS 分析,揭示了 UFB-PPy 对 Cr(VI)的吸附机理。结果表明,UFB-PPy 在批量和柱吸附中均对 Cr(VI)表现出优异的吸附性能。可能的吸附机制涉及静电吸引、离子交换和还原。方便的是,通过简单的煅烧 Cr(VI)捕获的 UFB-PPy(UFB-PPy-Cr),可以以高纯 CrO 的形式回收铬资源。