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用于有效去除刚果红的铁掺杂ZIF-67衍生磁性Fe/Co/C复合材料的制备

Fabrication of an Fe-Doped ZIF-67 Derived Magnetic Fe/Co/C Composite for Effective Removal of Congo Red.

作者信息

Cao Yu, Dai Zeming, Zhou Xuan, Lin Yuting, Hou Jianhua

机构信息

College of Environmental Science and Engineering, Yangzhou University, Yangzhou 225000, China.

Jiangsu Collaborative Innovation Center for Solid Organic Waste Resource Utilization, Nanjing 210095, China.

出版信息

Molecules. 2024 Apr 30;29(9):2078. doi: 10.3390/molecules29092078.

Abstract

The dyes in printing and dyeing wastewater are harmful to the human body and the environment. It is essential to develop practical and effective adsorbents to deal with them. In this study, an Fe-doped, ZIF-67 derived Fe/Co/C composite material with strong magnetism was successfully synthesized. The effects of pH, initial concentration, and adsorption time on the properties of the adsorbent were investigated. To further improve the removal efficiency and enhance the practicality, potassium peroxymonosulfate (PMS) was added to the system due to its Fenton-like effect. Then, an Fe/Co/C composite was used with PMS to remove Congo red (CR) with a 98% removal of 250 mg·L. Moreover, for its high saturation magnetization of 85.4 emu·g, the Fe/Co/C composite can be easily recovered by applying a magnetic field, solving the problem that powdery functional materials are difficult to recover and, thus, avoiding secondary pollution. Furthermore, since the composite material was doped before carbonization, this synthetic strategy is flexible and the required metal elements can be added at will to achieve different purposes. This study demonstrates that this Fe-doped, ZIF-67 derived magnetic material has potential application prospects for dye adsorption.

摘要

印染废水中的染料对人体和环境有害。开发实用且有效的吸附剂来处理它们至关重要。在本研究中,成功合成了一种具有强磁性的铁掺杂、ZIF-67衍生的Fe/Co/C复合材料。研究了pH值、初始浓度和吸附时间对吸附剂性能的影响。为了进一步提高去除效率并增强实用性,由于其类芬顿效应,将过一硫酸钾(PMS)添加到系统中。然后,使用Fe/Co/C复合材料与PMS去除刚果红(CR),对250 mg·L的刚果红去除率达98%。此外,由于Fe/Co/C复合材料具有85.4 emu·g的高饱和磁化强度,通过施加磁场可轻松回收,解决了粉末状功能材料难以回收的问题,从而避免了二次污染。此外,由于复合材料在碳化前进行了掺杂,这种合成策略具有灵活性,可以随意添加所需的金属元素以实现不同目的。本研究表明,这种铁掺杂、ZIF-67衍生的磁性材料在染料吸附方面具有潜在的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/460d/11085441/f2048e7b3895/molecules-29-02078-g001.jpg

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