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A Novel Nanocomposite of Activated Serpentine Mineral Decorated with Magnetic Nanoparticles for Rapid and Effective Adsorption of Hazardous Cationic Dyes: Kinetics and Equilibrium Studies

机译:磁性纳米粒子修饰的新型活性蛇纹石矿物纳米复合材料可快速有效地吸附有害阳离子染料:动力学和平衡研究

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摘要

A widely distributed mineral, serpentine, obtained from Wadi Ghadir (Eastern Desert in Egypt) was studied as a potential naturally and abundantly available source for the synthesis of an efficient adsorbent for aquatic remediation applications. A novel nanocomposite was synthesized after the exfoliation of the layered structure of serpentine by hydrogen peroxide treatment (serpentine (SP)), followed by decoration with magnetic Fe O nanoparticles (MNP). The goal behind the utilization of the latter phase was to increase the environmental remediation capability and to incorporate magnetic properties at the final adsorbent, toward a better separation after the use. The fabricated composite (MNP/SP) was characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), and transmission electron microscopy (TEM). The composite’s potential adsorption application toward the removal of two cationic dyes, methylene blue (MB) and malachite green (MG), was investigated. The observed adsorption kinetics was fast, and the highest uptake was observed at pH = 8, with the capacities to reach 162 and 176 mg g for MB and MG, respectively, values significantly higher than various other materials tested against these two cationic dyes. Compared to hydrogen peroxide-treated serpentine, the removal efficiency of the composite was higher by 157 and 127% for MB and MG, respectively. The MB and MG were adsorbed because of the favorable electrostatic interactions between MNP/SP active sites and the cationic dyes. The close value capacities suggest that the difference in chemistry of the two dyes does not affect the interactions, with the later occurring via the dyes’ amine functionalities. With increasing ionic strength, the adsorption of the studied basic dyes was slightly decreased, suggesting only partial antagonistic ion effect. The sorbent can be easily regenerated and reused without significant deterioration of its adsorption efficiency, which makes MNP/SP a promising adsorbent for the removal of hazardous pollutants from aquatic environments.
机译:研究人员从Wadi Ghadir(埃及东部沙漠)获得了分布广泛的蛇纹石矿物,将其作为潜在的天然来源和丰富的来源,用于合成用于水生修复应用的有效吸附剂。通过过氧化氢处理(蛇纹石(SP))剥夺蛇纹石的层状结构,然后用磁性Fe O纳米粒子(MNP)装饰,合成了一种新型的纳米复合材料。利用后一阶段的目的是提高环境修复能力,并在最终的吸附剂中引入磁性,从而在使用后实现更好的分离。通过扫描电子显微镜(SEM),傅立叶变换红外光谱(FTIR)和透射电子显微镜(TEM)对制成的复合材料(MNP / SP)进行表征。研究了该复合材料在去除两种阳离子染料亚甲基蓝(MB)和孔雀石绿(MG)方面的潜在吸附应用。观察到的吸附动力学很快,并且在pH = 8时观察到了最大的吸收,MB和MG的容量分别达到162和176 mg g,其值明显高于针对这两种阳离子染料测试的各种其他材料。与过氧化氢处理的蛇纹石相比,MB和MG的复合材料去除率分别提高了157和127%。 MB和MG被吸附,因为MNP / SP活性位与阳离子染料之间存在良好的静电相互作用。接近的容量表明这两种染料的化学差异不会影响相互作用,而后者通过染料的胺官能团发生。随着离子强度的增加,所研究的碱性染料的吸附略有减少,这表明仅部分拮抗离子作用。该吸附剂可以很容易地进行再生和再利用,而不会显着降低其吸附效率,这使得MNP / SP成为一种有前途的吸附剂,可用于去除水生环境中的有害污染物。

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