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概念核心:用于废水修复的纳米零价铁(NZVI)的合成、结构与反应活性

Core to concept: synthesis, structure, and reactivity of nanoscale zero-valent iron (NZVI) for wastewater remediation.

作者信息

Garg Rajni, Mittal Mona, Tripathi Smriti, Eddy Nnabuk Okon

机构信息

Department of Applied Science and Humanities, Galgotias College of Engineering and Technology, Greater Noida, UP, 201310, India.

Department of Chemistry, Directorate of Geology and Mining, Lucknow, Uttar Pradesh, 226001, India.

出版信息

Environ Sci Pollut Res Int. 2024 Dec;31(60):67496-67520. doi: 10.1007/s11356-024-33197-x. Epub 2024 Apr 17.

DOI:10.1007/s11356-024-33197-x
PMID:38630403
Abstract

Numerous technological advancements have been developed to tackle the issue of wastewater remediation effectively. However, the practical application of these technologies on a large scale has faced several challenges that have hindered their progress. These challenges include low selectivity, high energy requirements, and significant expenses. Nanoscale materials have demonstrated remarkable effectiveness in removing a wide range of contaminants. Nanoscale zero-valent iron (NZVI) exhibits a range of distinctive physical and chemical properties that have proven to be highly effective in various environmental remediation applications. These include its impressive surface area, remarkable reactivity, and its capacity to create stable colloidal suspensions. The paper explores the synthetic techniques for NZVI with special emphasis on green synthesis and the use of capping or support agents for maintaining stability and enhancing the reactivity of NZVI. The various structural and reactivity aspects of NZVI have been highlighted for its potential application in wastewater treatment sequestrating various categories of inorganic and organic contaminants. The discussion also delves into the limitations of NZVI, highlighting its dependence on water as a medium for contact reaction or electron transfer through the action mechanism of NZVI in adsorptive and photocatalytic sequestration of contaminants. The beneficial potential of NZVI-based composite systems in the field of environmental remediation has also been included which aids in the application of NZVI in environmental remediation.

摘要

为有效解决废水修复问题,人们已研发出众多技术进步。然而,这些技术在大规模实际应用中面临诸多挑战,阻碍了其发展。这些挑战包括选择性低、能源需求高和成本高昂。纳米材料在去除多种污染物方面已显示出显著成效。纳米零价铁(NZVI)具有一系列独特的物理和化学性质,在各种环境修复应用中已被证明非常有效。这些性质包括其可观的表面积、显著的反应活性以及形成稳定胶体悬浮液的能力。本文探讨了NZVI的合成技术,特别强调绿色合成以及使用封端或支撑剂来维持稳定性并提高NZVI的反应活性。文中突出了NZVI的各种结构和反应活性方面,以展示其在废水处理中螯合各类无机和有机污染物的潜在应用。讨论还深入探讨了NZVI的局限性,强调了其在吸附和光催化螯合污染物的作用机制中依赖水作为接触反应或电子转移的介质。文中还介绍了基于NZVI的复合系统在环境修复领域的有益潜力,这有助于NZVI在环境修复中的应用。

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