Confined iron-based nanomaterials for water decontamination: Fundamentals, applications, and challenges

IF 6.2 3区 综合性期刊 Q1 Multidisciplinary
Wanyi Fu, Ziyao Liu, Zhichao Yang, Yuhang Li, Bingcai Pan
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引用次数: 0

Abstract

Nanotechnology-enabled water treatment is the most attractive approach to realizing advanced purification of contaminated waters that challenge the efficacy of traditional water treatment technologies. Confining nanomaterials inside porous scaffolds or substrates is one of the most effective strategies to push nano-enabled water treatment technologies forward from laboratory to field application. As flourishingly reported, confinement effects induce significantly improved decontamination efficiency, such as enhanced adsorption capacity, reaction kinetics, stability, and selectivity. In this review, first we provide an overview of the general fundamentals of nanoconfinement effects and their implications in environmental remediation. Next, we review confined Fe-based nanomaterials, such as different polymorphs of iron-oxides, oxyhydroxides, zero-valent iron, and single-atom iron as representative materials towards their applications in nanoconfinement systems for water decontamination. Finally, we propose future studies based on the missing scientific fundamentals regarding nanoconfinement effects and challenges for translating unique and promising nanoconfinement observations to engineering applications of confined nanomaterials-driven water treatment technologies.

Abstract Image

用于水净化的密闭铁基纳米材料:基本原理、应用和挑战
纳米技术支持的水处理是实现污染水的高级净化的最有吸引力的方法,挑战了传统水处理技术的有效性。将纳米材料限制在多孔支架或基质内是将纳米水处理技术从实验室推向现场应用的最有效策略之一。正如大量报道的那样,约束效应显著提高了去污效率,如增强了吸附能力、反应动力学、稳定性和选择性。在这篇综述中,我们首先概述了纳米限制效应的基本原理及其在环境修复中的意义。接下来,我们回顾了约束铁基纳米材料,如氧化铁、氢氧化物、零价铁和单原子铁的不同多晶型,作为它们在水净化纳米约束系统中的代表性材料。最后,我们提出了基于纳米约束效应缺失的科学基础的未来研究,以及将独特和有前途的纳米约束观察转化为约束纳米材料驱动的水处理技术的工程应用所面临的挑战。
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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