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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Adsorption of pharmaceuticals in water using Fe3O4 coated polymer clay composite
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Adsorption of pharmaceuticals in water using Fe3O4 coated polymer clay composite

机译:Fe3O4包覆的聚合物粘土复合材料在水中吸附药物

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Adsorption of three pharmaceuticals, namely, atenolol, ciprofloxacin and gemfibrozil using synthesized magnetic polymer clay composite was investigated in detail by conducting batch kinetic, equilibrium and desorption experiments. Optimum ratio of composite adsorbent was found to be clay: chitosan: powdered activated carbon (PAC): magnetic nano particles (MNP) as 1:0.5:0.3:0.3. Characterization studies showed the incorporation of modifiers into the clay structure. Surface area of the synthesized pellets was 94.81 m(2)/g with mesoporous surface. Freundlich model was able to predict the adsorption equilibrium data. Maximum adsorption capacities were estimated to be 15.6, 39.1 and 24.8 mg/g for atenolol, ciprofloxacin and gemfibrozil, respectively. The main driving force of adsorption was electrostatic interaction. The adsorbent performance was affected at lower and higher pH and by the presence of humic acid. Desorption of atenolol and ciprofloxacin were significantly higher in acid and alkaline solution whereas gemfibrozil was desorbed upto 70% in methanol. Magnetically separable clay composite was found to be a suitable adsorbent for removing pharmaceuticals from water. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过分批动力学,平衡和解吸实验,详细研究了合成的磁性聚合物粘土复合材料对三种药物阿替洛尔,环丙沙星和吉非贝齐的吸附作用。发现复合吸附剂的最佳比例为粘土:壳聚糖:粉末状活性炭(PAC):磁性纳米颗粒(MNP)为1:0.5:0.3:0.3。表征研究表明,将改性剂掺入粘土结构中。合成的颗粒的表面积为94.81 m(2)/ g,具有中孔表面。 Freundlich模型能够预测吸附平衡数据。阿替洛尔,环丙沙星和吉非贝齐的最大吸附容量估计分别为15.6、39.1和24.8 mg / g。吸附的主要驱动力是静电相互作用。在较低和较高的pH值下,以及腐殖酸的存在下,吸附剂的性能都会受到影响。在酸性和碱性溶液中,阿替洛尔和环丙沙星的解吸率明显更高,而吉非贝齐在甲醇中的解吸率高达70%。发现磁性可分离的粘土复合物是用于从水中除去药物的合适吸附剂。 (C)2016 Elsevier Inc.保留所有权利。

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