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磁性FeO包裹的中枢神经系统聚合物/还原氧化石墨烯复合材料的显著可重复使用性:一种高效的Pb和Hg离子吸附剂。

Remarkable reusability of magnetic FeO-encapsulated CNS polymer/reduced graphene oxide composite: A highly effective adsorbent for Pb and Hg ions.

作者信息

Fu Weng, Wang Xiaoyu, Huang Zhiqiang

机构信息

The University of Queensland, School of Chemical Engineering, St Lucia, 4072, QLD, Australia.

The University of Queensland, School of Chemical Engineering, St Lucia, 4072, QLD, Australia.

出版信息

Sci Total Environ. 2019 Apr 1;659:895-904. doi: 10.1016/j.scitotenv.2018.12.303. Epub 2019 Jan 4.

Abstract

Magnetic FeO-encapsulated CNS polymer/reduced graphene oxide composite (rGO-poly(CNS)/FeO) was synthesized to remove Pb(II) and Hg(II) from aqueous solutions. This material was characterized by X-ray Photoelectron Spectroscopy, transmission electron microscopy, Fourier-transform infrared spectroscopy, X-ray powder diffraction, N adsorption, etc. The results suggest that final composite exhibits two-dimensional (2D) nanosheet structure, in which FeO nanoparticles or clusters are encapsulated between the layers of rGO-poly(CNS) matrix, preventing composite aggregation and nanoparticle detachment. The results of adsorption tests suggested high metal removal and short residence time to reach equilibrium. The adsorption kinetics data were well fitted by pseudo-second-order equation. The effect of metal concentration on adsorption was illustrated by Langmuir isotherm equation. Maximum metal-uptake capacities for Pb(II) and Hg(II) ions were 270.3 and 400.0 mg/g, respectively. High-resolution XPS spectra clearly illustrate the adsorption mechanism, in that Hg(II) preferentially binds to sulphur functional groups and Pb(II) tends to be adsorbed by nitrogen groups in poly(CNS) matrix. Recycling performance of this composite was investigated in 15 consecutive adsorption-desorption cycles, after which the adsorption capacities for Pb(II), and Hg(II) ions remain stable thanks to FeO encapsulation into the rGO-poly(CNS) matrix.

摘要

合成了磁性FeO包裹的中枢神经系统聚合物/还原氧化石墨烯复合材料(rGO-聚(CNS)/FeO),用于从水溶液中去除Pb(II)和Hg(II)。通过X射线光电子能谱、透射电子显微镜、傅里叶变换红外光谱、X射线粉末衍射、N吸附等对该材料进行了表征。结果表明,最终复合材料呈现二维(2D)纳米片结构,其中FeO纳米颗粒或团簇包裹在rGO-聚(CNS)基质层之间,防止了复合材料的聚集和纳米颗粒的脱落。吸附试验结果表明,该材料对金属的去除率高,达到平衡的停留时间短。吸附动力学数据符合准二级方程。用Langmuir等温方程说明了金属浓度对吸附的影响。Pb(II)和Hg(II)离子的最大金属吸附容量分别为270.3和400.0 mg/g。高分辨率XPS光谱清楚地说明了吸附机理,即Hg(II)优先与硫官能团结合,而Pb(II)倾向于被聚(CNS)基质中的氮基团吸附。对该复合材料进行了15次连续的吸附-解吸循环回收性能研究,由于FeO包裹在rGO-聚(CNS)基质中,Pb(II)和Hg(II)离子的吸附容量在循环后保持稳定。

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