Magnetic Ion-Imprinted Materials for Selective Adsorption of Cr(VI): Adsorption Behavior and Mechanism Study

被引:6
作者
Li, Shunfei [1 ]
Ye, Siqing [1 ]
Zhang, Weiye [1 ]
He, Hongxing [1 ]
Zhang, Yi [1 ]
Xiong, Mingyang [1 ]
Chen, Yuhan [1 ]
Wang, Mingqiu [1 ]
Nie, Zhifeng [1 ]
机构
[1] Kunming Univ, Sch Chem & Chem Engn, Yunnan Key Lab Met Organ Mol Mat & Device, Kunming 650214, Peoples R China
来源
MOLECULES | 2024年 / 29卷 / 09期
关键词
ion-imprinted polymer; Cr(VI) capture; magnetic separation; density functional theory (DFT); SOLID-PHASE EXTRACTION; GRAPHENE OXIDE; REMOVAL; CHROMIUM; FABRICATION; POLYMER; REDUCTION; PHOSPHATE; KINETICS; SOLVENT;
D O I
10.3390/molecules29091952
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
With the increase of hexavalent Cr(VI) wastewater discharged from industrial production, it seriously pollutes water bodies and poses a risk to human health. Adsorption is used as an effective means to treat Cr(VI), but its effectiveness is affected by pH, and the adsorption performance decreases when acidity is strong. Furthermore, research on the mechanism of Cr(VI) adsorption using DFT calculations needs to be developed. This study focuses on the development of magnetically responsive core-shell nano-ion imprinted materials (Fe3O4@GO@IIP) through magnetic separation and surface imprinting techniques. Characterization techniques including FT-IR, XRD, and EDS confirmed the core-shell nanostructure of Fe3O4@GO@IIP. Batch adsorption experiments and model simulations demonstrated the exceptional adsorption capacity of Fe3O4@GO@IIP for Cr(VI) in strongly acidic solutions (pH = 1), reaching a maximum of 89.18 mg/g. The adsorption mechanism was elucidated through XPS and DFT calculations, revealing that Fe3O4@GO@IIP operates through electrostatic interactions and chemical adsorption, with charge transfer dynamics quantified during the process. This research provides new insights for addressing Cr(VI) treatment in highly acidic environments.
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页数:20
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