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催化铁-铜法还原硝基苯

Reduction of nitrobenzene by the catalyzed Fe-Cu process.

作者信息

Xu Wen-Ying, Gao Ting-Yao, Fan Jin-Hong

机构信息

The National Engineering Research Center for Urban Pollution Control, Tongji University, Shanghai, 200092, China.

出版信息

J Hazard Mater. 2005 Aug 31;123(1-3):232-41. doi: 10.1016/j.jhazmat.2005.04.011.

Abstract

The electrochemical reduction characteristics of nitrobenzene were investigated using cyclic voltammetry. In addition, the difference in reduction mechanisms between Master Builders' iron and the catalyzed Fe-Cu process was discussed in this paper. The results showed that nitrobenzene was reduced directly on the surface of copper rather than by the hydrogen evolved at cathode in the catalyzed Fe-Cu process. The reduction was realized largely by the hydrogen evolved at cathode in Master Builders' iron. Both acidity and basicity favored the direct reduction at the copper electrode. The catalyzed Fe-Cu process was superior to Master Builders' iron in treating nitrobenzene-containing water, withal. This advantage was particular noticeable under alkaline conditions. The reduction was investigated in the cathode and anode compartments, respectively, and the experimental results showed that the direct pathway had a large role in the reduction by the catalyzed Fe-Cu process. To reduce nitrobenzene directly at the copper electrode is easier than to reduce it by the hydrogen evolved at cathode, copper could be regarded as the electrocatalyst in this case. The influence of copper usage on the treatment efficiency by the catalyzed Fe-Cu process was also studied. The results indicated copper increased the reduction rate. The catalyzed Fe-Cu process is of practical value.

摘要

采用循环伏安法研究了硝基苯的电化学还原特性。此外,本文还讨论了万能焊条用铁与催化铁 - 铜工艺还原机理的差异。结果表明,在催化铁 - 铜工艺中,硝基苯是直接在铜表面还原,而不是通过阴极析出的氢气还原。在万能焊条用铁中,还原主要是通过阴极析出的氢气实现的。酸性和碱性条件均有利于在铜电极上的直接还原。此外,催化铁 - 铜工艺在处理含硝基苯的水方面优于万能焊条用铁。在碱性条件下,这一优势尤为明显。分别在阴极室和阳极室对还原过程进行了研究,实验结果表明,直接途径在催化铁 - 铜工艺的还原中起很大作用。在铜电极上直接还原硝基苯比通过阴极析出的氢气还原更容易,在这种情况下,铜可被视为电催化剂。还研究了铜用量对催化铁 - 铜工艺处理效率的影响。结果表明,铜提高了还原速率。催化铁 - 铜工艺具有实际应用价值。

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