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Magnetic magnetite (Fe3O4) nanoparticle synthesis and applications for lead (Pb2+) and chromium (Cr6+) removal from water

机译:磁性磁铁矿(Fe3O4)纳米粒子的合成及其从水中去除铅(Pb2 +)和铬(Cr6 +)的应用

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Magnetic magnetite (Fe3O4) nanoparticles synthesized by chemical co-precipitation were characterized using XRD, TEM, SEM-EDX, FT-IR, ED-XRF, PPMS, point of zero charge (pH(pzc)) and surface area measurements. As-prepared Fe3O4 nanoparticles were successful for aqueous Cr6+ and Pb2+ removal. Batch adsorption experiments systematically investigated the influence of pH, temperature, contact time and adsorbate/adsorbent concentration on Cr6+ and Pb2+ adsorption. Maximum Cr6+ and Pb2+ removal occurred at pH 2.0 and 5.0, respectively. Sorption data fit pseudo-second order kinetics, indicating a chemical adsorption. The Freundlich, Langmuir, Redlich-Peterson, Toth, Radke and Sips adsorption isotherm models were applied to describe equilibrium data. The Sips and Langmuir models best described Cr6+ and Pb2+ adsorption on magnetite nanoparticles, respectively. The maximum Langmuir adsorption capacities were 34.87 (Cr6+ and 53.11 (Pb2+) mg/g at 45 degrees C, respectively. Fe3O4 nanoparticles are promising potential adsorbents and exhibited remarkable reusability for metal ions removal in water and wastewater treatment. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过XRD,TEM,SEM-EDX,FT-IR,ED-XRF,PPMS,零电荷点(pH(pzc))和表面积测量对化学共沉淀合成的磁性磁铁矿(Fe3O4)纳米粒子进行了表征。制备好的Fe3O4纳米颗粒可成功去除水中的Cr6 +和Pb2 +。分批吸附实验系统地研究了pH,温度,接触时间以及吸附物/吸附剂浓度对Cr6 +和Pb2 +吸附的影响。 Cr6 +和Pb2 +的最大去除分别在pH 2.0和5.0时发生。吸附数据符合拟二级动力学,表明化学吸附。 Freundlich,Langmuir,Redlich-Peterson,Toth,Radke和Sips吸附等温线模型用于描述平衡数据。 Sips和Langmuir模型分别最好地描述了Cr6 +和Pb2 +在磁铁矿纳米颗粒上的吸附。 Langmuir的最大吸附容量在45摄氏度时分别为34.87(Cr6 +和53.11(Pb2 +)mg / g).Fe3O4纳米粒子是有希望的潜在吸附剂,并且在水和废水处理中表现出显着的可重复使用的金属离子去除率(C)2015 。 版权所有。

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