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使用新型反应材料氧化镁负载纳米零价铁去除水中的六价铬

Removal of Cr(VI) from Water Using a New Reactive Material: Magnesium Oxide Supported Nanoscale Zero-Valent Iron.

作者信息

Siciliano Alessio

机构信息

Department of Environmental and Chemical Engineering, Unversity of Calabria, Rende (CS) 87036, Italy.

出版信息

Materials (Basel). 2016 Aug 6;9(8):666. doi: 10.3390/ma9080666.

Abstract

The chromium pollution of water is an important environmental and health issue. Cr(VI) removal by means of metallic iron is an attractive method. Specifically, nanoscopic zero valent iron (NZVI) shows great reactivity, however, its applicability needs to be further investigated. In the present paper, NZVI was supported on MgO grains to facilitate the treatments for remediation of chromium-contaminated waters. The performances and mechanisms of the developed composite, in the removal of hexavalent chromium, were investigated by means of batch and continuous tests. Kinetic studies, under different operating conditions, showed that reduction of Cr(VI) could be expressed by a pseudo second-order reaction kinetic. The reaction rate increased with the square of Fe(0) amount, while it was inversely proportional to the initial chromium concentration. The process performance was satisfactory also under uncontrolled pH, and a limited influence of temperature was observed. The reactive material was efficiently reusable for many cycles without any regeneration treatment. The performances in continuous tests were close to 97% for about 80 pore volume of reactive material.

摘要

水体中的铬污染是一个重要的环境与健康问题。利用金属铁去除六价铬是一种颇具吸引力的方法。具体而言,纳米零价铁(NZVI)表现出很高的反应活性,然而,其适用性仍需进一步研究。在本文中,纳米零价铁负载于氧化镁颗粒上,以利于对受铬污染水体的修复处理。通过间歇试验和连续试验,研究了所制备复合材料去除六价铬的性能及机制。在不同操作条件下的动力学研究表明,六价铬的还原可用准二级反应动力学来描述。反应速率随零价铁量的平方增加而增大,而与初始铬浓度成反比。在未控制pH值的情况下,该处理过程的性能也令人满意,且观察到温度的影响有限。反应材料无需任何再生处理即可有效重复使用多个循环。对于约80个孔隙体积的反应材料,连续试验中的去除率接近97%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d647/5509277/718be6eadaea/materials-09-00666-g001.jpg

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