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磁性 FeO 纳米材料在去除新兴污染物方面的应用进展。

Recent advances in the application of magnetic FeO nanomaterials for the removal of emerging contaminants.

机构信息

School of Energy and Environmental Engineering, University of Science & Technology Beijing, Beijing, 100083, People's Republic of China.

Beijing Key Laboratory of Resource-Oriented Treatment of Industrial Pollutants, University of Science & Technology Beijing, Beijing, 100083, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2021 Feb;28(7):7599-7620. doi: 10.1007/s11356-020-11877-8. Epub 2021 Jan 4.

Abstract

Emerging contaminants (ECs) are widely distributed and potentially hazardous to human health and the ecological system. However, traditional wastewater treatment techniques are not sufficient to remove ECs. Magnetic nanomaterials are made of ferromagnetic or superparamagnetic magnetic elements such as iron and nickel, which can be easily separated from the aqueous solution, making them ideal adsorbents for contaminants in water. This review focused on the synthesis approaches of magnetic FeO nanoparticles (MFNs), as well as surface modification in order to improve their stability and functional diversity. Also, a detailed summary on the state-of-art application of magnetic nanomaterials on the removal of ECs was addressed. Additionally, challenges and future prospective of applying magnetic nanomaterials into real-world cases were discussed, in which the green and simple synthesis and evaluation of the toxic effects of MFNs are still of great challenge. This work summarizes the recent progress of using magnetic nanomaterials as promising and powerful tools in the treatment of ECs-contaminated water, benefiting researchers interested in nanomaterials and environmental studies.

摘要

新兴污染物(ECs)广泛分布,对人类健康和生态系统具有潜在危害。然而,传统的废水处理技术不足以去除 ECs。磁性纳米材料由铁和镍等铁磁或超顺磁磁体元素组成,可从水溶液中轻易分离,使其成为水中污染物的理想吸附剂。本综述重点介绍了磁性 FeO 纳米颗粒(MFNs)的合成方法,以及为提高其稳定性和功能多样性而进行的表面修饰。此外,还详细总结了磁性纳米材料在去除 ECs 方面的最新应用。此外,还讨论了将磁性纳米材料应用于实际案例所面临的挑战和未来前景,其中绿色、简单的 MFNs 合成和毒性评估仍然极具挑战。这项工作总结了将磁性纳米材料作为处理 ECs 污染水的有前途和强大工具的最新进展,使对纳米材料和环境研究感兴趣的研究人员受益。

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