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A Hydrothermal Synthesis of Fe3O4@C Hybrid Nanoparticle and Magnetic Adsorptive Performance to Remove Heavy Metal Ions in Aqueous Solution

机译:Fe3O4 @ C杂化纳米粒子的水热合成及磁吸附性能去除水溶液中的重金属离子

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摘要

Advanced core-shelled material with a high specific area has been considered as an effective material to remove heavy metal from aqueous solutions. A core-shelled Fe3O4@C hybrid nanoparticle aggregates with environmental-friendly channel in the study. Moreover, the higher exposure of adsorption sites can be achieved for the special configuration that higher Brunauer-Emmet-Teller (BET) surface area reaches up to 238.18 m2 g−1. Thus, a more efficiently heavy metal ion removal is obtained, Pb (II), Cd (II), Cu (II), and Cr (VI) up to 100, 99.2, 96.6, and 94.8%, respectively. In addition, the products are easy to be separated from the aqueous solutions after adsorption, due to the relative large submicrometer size and the enhanced external magnetic fields introduced by the iron-based cores. We provide an ideal mode to remove heavy metal ions using core-shelled Fe3O4@C under the water treatment condition. A new approach is clarified that core-shell nano/micro-functional materials can be synthesized well on large scales which are used in many fields such as environmental remediation, catalyst, and energy.
机译:具有高比表面积的高级核壳材料被认为是从水溶液中去除重金属的有效材料。研究中,带核壳的Fe3O4 @ C杂化纳米颗粒具有环保通道。此外,对于特殊配置,可以实现更高的吸附位点暴露,即更高的Brunauer-Emmet-Teller(BET)表面积达到238.18 m 2 g -1 。因此,获得了更有效的重金属离子去除,Pb(II),Cd(II),Cu(II)和Cr(VI)分别高达100、99.2、96.6和94.8%。另外,由于相对较大的亚微米尺寸和铁基芯引入的增强的外部磁场,吸附后的产品易于从水溶液中分离出来。我们提供了一种在水处理条件下使用带核壳的Fe3O4 @ C去除重金属离子的理想模式。阐明了一种新方法,可以很好地大规模合成核壳纳米/微功能材料,这些材料可用于许多领域,例如环境修复,催化剂和能源。

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