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基于磁性氧化铁纳米材料的高级功能纳米结构在水修复中的应用:综述。

Advanced Functional Nanostructures based on Magnetic Iron Oxide Nanomaterials for Water Remediation: A Review.

机构信息

Center of Nanoscience, Nanotechnology and Innovation - CeNano(2)I, Department of Metallurgical and Materials Engineering, Federal University of Minas Gerais - UFMG, Av. Antônio Carlos, 6627 - Belo Horizonte/MG, Brazil.

出版信息

Water Res. 2021 Feb 15;190:116693. doi: 10.1016/j.watres.2020.116693. Epub 2020 Nov 30.

Abstract

The fast growth of industrialization combined with the increasing population has led to an unparalleled demand for providing water in a safe, reliable, and cost-effective way, which has become one of the biggest challenges of the twenty-first century faced by global society. The application of nanotechnology in water treatment and pollution cleanup is a promising alternative in order to overcome the current limitations. In particular, the application of magnetic iron oxide nanoparticles (MIONs) for environmental remediation has currently received remarkable attention due to its unique combination of physicochemical and magnetic properties. Given the broadening use of these functional engineered nanomaterials, there is a growing concern about the adverse effects upon exposure of products and by-products to the environment. This makes vitally relevant the development of green chemistry in the synthesis processes combined with a trustworthy risk assessment of the nanotoxicity of MIONs as the scientific knowledge of the potential hazard of nanomaterials remains limited. This work provides comprehensive coverage of the recent progress on designing and developing iron oxide-based nanomaterials through a green synthesis strategy, including the use of benign solvents and ligands. Despite the limitations of nanotoxicity and environmental risks of iron oxide-based nanoparticles for the ecosystem, this critical review presents a contribution to the emerging knowledge concerning the theoretical and experimental studies on the toxicity of MIONs. Potential improvement of applications of advanced iron oxide-based hybrid nanostructures in water treatment and pollution control is also addressed in this review.

摘要

工业化的快速发展和人口的不断增长导致了以安全、可靠和具有成本效益的方式提供水的需求空前增长,这成为了全球社会在 21 世纪面临的最大挑战之一。为了克服当前的限制,将纳米技术应用于水处理和污染清理是一种很有前途的替代方法。特别是,由于磁性氧化铁纳米粒子(MIONs)具有独特的物理化学和磁性能,因此其在环境修复中的应用目前受到了极大的关注。鉴于这些功能工程纳米材料的广泛使用,人们越来越关注产品和副产品暴露于环境中的不良影响。这使得在合成过程中发展绿色化学以及对 MIONs 的纳米毒性进行可信的风险评估变得至关重要,因为纳米材料潜在危害的科学知识仍然有限。这项工作全面介绍了通过绿色合成策略设计和开发氧化铁基纳米材料的最新进展,包括使用良性溶剂和配体。尽管氧化铁基纳米粒子对生态系统具有纳米毒性和环境风险的局限性,但这篇重要评论为有关 MIONs 毒性的理论和实验研究的新兴知识做出了贡献。本综述还讨论了先进的氧化铁基杂化纳米结构在水处理和污染控制中的应用的潜在改进。

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