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核壳型双磁纳米吸附剂用于从水溶液中去除六价铬。

Core-Shell Bimagnetic Nanoadsorbents for Hexavalent Chromium Removal from Aqueous Solutions.

机构信息

Laboratório de Nanociência Ambiental e Aplicada-LNAA, Faculdade UnB Planaltina, UnB, 73345-010 Brasília, Brazil.

Laboratório de Nanociência Ambiental e Aplicada-LNAA, Faculdade UnB Planaltina, UnB, 73345-010 Brasília, Brazil.

出版信息

J Hazard Mater. 2019 Jan 15;362:82-91. doi: 10.1016/j.jhazmat.2018.09.008. Epub 2018 Sep 7.

Abstract

Novel nanoadsorbents based on core-shell bimagnetic nanoparticles (CoFeO@ɣ-FeO) with two different mean sizes were elaborated, characterized and applied as potential sorbents for Cr(VI) removal from aqueous solutions through magnetically assisted chemical separation. The nanoadsorbents were characterized by XRD, TEM, FTIR, XPS, potentiometric-conductometric titrations, BET and vibrating sample magnetometry. The influence of contact time, shaking rate, pH, pollutant concentration, temperature and competing ions on Cr(VI) adsorption were evaluated. The results were analyzed in the framework of Langmuir and Freundlich models to evaluate the maximum adsorption capacity and the extent of affinity. The nanoadsorbents showed a good selectivity for Cr(VI) adsorption and were more effective at pH = 2.5, with a shaking rate of 400 RPM. The adsorption process was spontaneous, endothermic and presented an increased randomness. The contact time required to reach the equilibrium was relatively short and the kinetic date followed the pseudo-second-order model. The maximum adsorption capacity was nearly 40% higher for the nanoadsorbent of smaller mean size due to its higher surface area. Regeneration studies revealed that the nanoadsorbents can be recovered for reuse. These results indicate that prepared nanoadsorbents can be used as a powerful tool for Cr(VI) removal from contaminated water.

摘要

基于具有两种不同平均粒径的核壳双磁纳米粒子(CoFeO@ɣ-FeO)的新型纳米吸附剂被精心设计、表征,并应用于通过磁辅助化学分离从水溶液中去除 Cr(VI) 的潜在吸附剂。纳米吸附剂通过 XRD、TEM、FTIR、XPS、电位-电导滴定、BET 和振动样品磁强计进行了表征。研究了接触时间、搅拌速度、pH 值、污染物浓度、温度和竞争离子对 Cr(VI)吸附的影响。结果根据 Langmuir 和 Freundlich 模型进行了分析,以评估最大吸附容量和亲和力程度。纳米吸附剂对 Cr(VI)吸附具有良好的选择性,在 pH = 2.5、搅拌速度为 400 RPM 时效果更佳。吸附过程是自发的、吸热的,并呈现出增加的随机性。达到平衡所需的接触时间相对较短,动力学数据符合准二级模型。由于较小平均粒径的纳米吸附剂具有更高的表面积,其最大吸附容量提高了近 40%。再生研究表明,纳米吸附剂可回收再利用。这些结果表明,所制备的纳米吸附剂可用于从受污染的水中去除 Cr(VI)。

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