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Functional polyaniline/multiwalled carbon nanotube composite as an efficient adsorbent material for removing Pharmaceuticals from aqueous media

机译:功能性聚苯胺/多壁碳纳米管复合材料,作为从水性介质中去除药物的有效吸附材料

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The composite polyaniline/multiwalled carbon nanotube (PAni/MWCNT, 1:0.1 w/w) was developed with the intention of binding the adsorbent properties of two materials and using it to adsorb pharmaceuticals from aqueous media. PAni/MWCNT was characterized by scanning electron microscopy, thermogravimetry, infrared spectroscopy, pH at the point of zero charge, and the effect on the surface wettability of the material. As proof of concept, adsorption studies were carried out using meloxicam (MLX) as the pharmaceutical and it was evaluated as a function of pH, temperature, ionic strength, contact time and variation in concentration. Kinetics and isothermal models were applied to evaluate the mechanism of the adsorption process. The best MLX adsorption result was at pH 2 with 6 min of contact with PAni/MWCNT. The kinetics models that fitted the experimental data were pseudo-second order and Elovich and the kinetics model was the dual-site Langmuir-Freundlich. Both models suggest that the adsorption occurs by the chemical nature of the surface and in the pores of the energetically heterogeneous composite. The PAni/MWCNT presented an adsorption capacity of 221.2 mg g(-1), a very good value when compared with the literature and can be used to remove pharmaceuticals from aqueous environments.
机译:聚苯胺/多壁碳纳米管(PAni / MWCNT,1:0.1 w / w)复合材料的开发旨在结合两种材料的吸附性能,并用于从水性介质中吸附药物。通过扫描电子显微镜,热重分析,红外光谱,零电荷点的pH值以及对材料表面润湿性的影响来表征PAni / MWCNT。作为概念证明,使用美洛昔康(MLX)作为药物进行吸附研究,并将其评估为pH,温度,离子强度,接触时间和浓度变化的函数。动力学和等温模型用于评估吸附过程的机理。最佳的MLX吸附结果是在pH 2下与PAni / MWCNT接触6分钟。符合实验数据的动力学模型是伪二级和Elovich,动力学模型是双位Langmuir-Freundlich。两种模型均表明,吸附是通过能量异质复合材料的表面和孔的化学性质发生的。 PAni / MWCNT的吸附容量为221.2 mg g(-1),与文献相比非常好,可用于从水性环境中去除药物。

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