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Characterization methods of zerovalent iron for water treatment and remediation

机译:用于水处理和修复的零价铁的表征方法

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摘要

Appropriately selecting methods for characterizing the reaction system of zerovalent iron (ZVI) favors its application for water treatment and remediation. Hence, a survey of the available ZVI characterization techniques used in laboratory and field studies are presented in this review for clarifying the characteristic properties, (in-situ) corrosion processes, and corrosion products of ZVI system. The methods are generally classified into four broad categories: morphology characterization techniques, (sub-)surface and bulk analysis mainly via the spectral protocols, along with the (physio)electrochemical alternatives. Moreover, this paper provides a critical review on the scopes and applications of ZVI characterization methodologies from several perspectives including their suitable occasions, availability, (semi-)quantitative/qualitative evaluations, in/ex-situ reaction information, advantages, limitations and challenges, as well as economic and technical remarks. In particular, the characteristic spectroscopic peak locations of typical iron (oxyhydr)oxides are also systematically summarized. In view of the complexity and variety of ZVI system, this review further addresses that different characterization methods should be employed together for better assessing the performance and mechanisms of ZVI-involved systems and thereby facilitating the deployment of ZVI-based installations in real practice. (C) 2018 Elsevier Ltd. All rights reserved.
机译:适当选择表征零价铁(ZVI)反应体系的方法有利于其在水处理和修复中的应用。因此,本综述对实验室和现场研究中使用的可用ZVI表征技术进行了调查,以阐明ZVI系统的特性,(原位)腐蚀过程和腐蚀产物。这些方法通常分为四大类:形态表征技术,主要通过光谱协议进行的(亚)表面和本体分析以及(物理)电化学替代方法。此外,本文从几个角度对ZVI表征方法的范围和应用进行了严格的回顾,包括其合适的场合,可得性,(半)定量/定性评估,原位/异位反应信息,优势,局限性和挑战,以及经济和技术评论。特别是,还系统地总结了典型的氧化铁(羟基氧化物)的特征光谱峰位置。考虑到ZVI系统的复杂性和多样性,本文将进一步探讨不同的表征方法应一起使用,以更好地评估涉及ZVI的系统的性能和机制,从而在实际实践中促进基于ZVI的设备的部署。 (C)2018 Elsevier Ltd.保留所有权利。

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