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基于零价铁(ZVI)材料对硝酸盐的还原:综述

Reduction of nitrate by zero valent iron (ZVI)-based materials: A review.

作者信息

Liu Yong, Wang Jianlong

机构信息

College of Chemistry and Materials Science, Sichuan Normal University, Chengdu 610066, PR China; Collaborative Innovation Center for Advanced Nuclear Energy Technology, INET, Tsinghua University, Beijing 100084, PR China.

Collaborative Innovation Center for Advanced Nuclear Energy Technology, INET, Tsinghua University, Beijing 100084, PR China; Beijing Key Laboratory of Radioactive Wastes Treatment, Tsinghua University, Beijing 100084, PR China.

出版信息

Sci Total Environ. 2019 Jun 25;671:388-403. doi: 10.1016/j.scitotenv.2019.03.317. Epub 2019 Mar 26.

Abstract

Zero valent iron (ZVI) and ZVI-based materials have been widely used for the reduction of nitrate, a major contaminant commonly detected in groundwater and surface water. The reduction of nitrate by ZVI is influenced by various factors, such as the physical and chemical characteristics of ZVI and the operational parameters. There are some problems for the nitrate reduction by ZVI alone, for example, the formation of iron oxides on the surface of ZVI at high pH condition, which will inhibit the further reduction of nitrate; in addition, the end reduction product is mainly ammonium, which itself needs to be concerned. Several strategies, such as the optimization of the structure of ZVI composites and the addition of reducing assistants, have been proposed to increase the reduction efficiency and the selectivity of end product of nitrate reduction in a wide range of pH, especially under neutral pH condition. This review will mainly focus on the high efficient reduction of nitrate by ZVI-based materials. Firstly, the reduction of nitrate by ZVI alone was briefly introduced and discussed, including the influence of physical and chemical characteristics of ZVI and some operational parameters on the reduction efficiency of nitrate. Then, the strategies for enhancing the reduction efficiency and the N selectivity of the reductive products of nitrate were systematically analyzed and evaluated, especially the optimization of the structure of ZVI composites (e.g., doped ZVI composite, supported ZVI composite and premagnetized ZVI), and the addition of reducing assistants (e.g., metal cations, ligand, hydrogen gas and light) were highlighted. Thirdly, the mechanisms and pathways of nitrate reduction were discussed. Finally, concluding remarks and some suggestions for the future research were proposed.

摘要

零价铁(ZVI)及基于零价铁的材料已被广泛用于还原硝酸盐,硝酸盐是在地下水和地表水中常见的主要污染物。ZVI对硝酸盐的还原受多种因素影响,如ZVI的物理化学特性及运行参数。单独使用ZVI进行硝酸盐还原存在一些问题,例如在高pH条件下ZVI表面会形成铁氧化物,这将抑制硝酸盐的进一步还原;此外,最终还原产物主要是铵,其本身也需要关注。已提出了多种策略,如优化ZVI复合材料的结构以及添加还原助剂,以在广泛的pH范围内提高硝酸盐还原效率及最终产物的选择性,特别是在中性pH条件下。本综述将主要聚焦于基于ZVI的材料对硝酸盐的高效还原。首先,简要介绍并讨论了单独使用ZVI还原硝酸盐的情况,包括ZVI的物理化学特性及一些运行参数对硝酸盐还原效率的影响。然后,系统分析并评估了提高硝酸盐还原产物还原效率和N选择性的策略,尤其突出了ZVI复合材料结构的优化(如掺杂ZVI复合材料、负载型ZVI复合材料和预磁化ZVI)以及还原助剂的添加(如金属阳离子、配体、氢气和光)。第三,讨论了硝酸盐还原的机制和途径。最后,提出了总结性评论及对未来研究的一些建议。

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