三元磁性蒙脱土复合材料水溶液吸附去除双酚A

O. Okon, E. Inam, Nnanake-Abasi O. Offiong, U. Akpabio
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引用次数: 1

摘要

研究了在不同条件下,双酚A在未经处理的蒙脱土粘土、掺杂钛复合材料和阳离子聚合物改性的三磁性蒙脱土复合材料上的吸附性能。改性吸附剂在水介质中分散时,通过外加磁场对材料的作用来确定其磁性能。对未改性和改性吸附剂的XRD结果表明,由于前驱体分子的插入,粘土材料的层间距增大。BET分析结果表明,三磁性复合材料的孔径和比表面积为288.08 m2/g,未改性粘土的孔径和比表面积为90.39 m2/g。TGA结果表明,与未改性的蒙脱土相比,三元磁性复合材料稳定性更好,质量损失率最低。三元磁性复合材料具有较高的吸附能力。Freundlich等温吸附模型最能描述吸附过程,该模型证实了吸附过程是多层覆盖在吸附剂的不均匀表面上。对吸附数据的动力学处理证实了该过程符合准二级动力学模型,以化学吸附为主。通过标准吉布自由能的计算表明,未改性蒙脱土、掺杂钛复合材料和三方磁性复合材料的吸附过程具有良好的自发性,其吸附能分别为- 336.70、- 533.76和- 1438.38 KJ/mol。在模拟工业废水中,粘土材料中加入阳离子芳香基团增加了污染物-吸附剂的相互作用,提高了对微污染物的吸附能力。
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Aqueous Adsorptive Removal of Bisphenol A Using Tripartite Magnetic Montmorillonite Composites
The adsorption of bisphenol A into untreated montmorillonite clay, doped titanium composite and cationic polymer modified tripartite magnetic montmorillonite composite was investigated under different conditions. The magnetic property of the modified adsorbent was ascertained by action of external magnetic field on the materials when dispersed in aqueous media. The XRD results for the unmodified and modified adsorbents showed that interlayer spacing of the clay material increases due to intercalation of the precursor molecules. The textural properties of the adsorbents from BET analysis showed that pore size and specific surface area of the tripartite magnetic composite was calculated to be 288.08 m2/g while that of the unmodified clay was 90.39 m2/g. The TGA results showed the tripartite magnetic composite was more stable with the lowest percentage mass loss compared to the unmodified montmorillonite. The tripartite magnetic composite showed higher adsorption capacity. Adsorption was best described by the Freundlich isotherm model, which confirmed that the adsorption process was multilayer coverage unto the uneven surface of the adsorbents. Kinetic treatment of the adsorption data confirmed the the process followed a pseudo-second-order kinetic model and predominantly chemisorption process. The standard Gibb’s free energy computed for the adsorbents showed that the adsorption processes were favourably spontaneous with highly negative energy values of −336.70, −533.76 and −1438.38 KJ/mol, respectively, for the unmodified montmorillonite, doped titanium composite and the tripartite magnetic composite. It was observed that the addition of cationic aromatic moiety to the clay material increased pollutant-adsorbent interactions and improved adsorption capacity for micro-pollutants in a simulated industrial effluent.
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