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几种改性尺寸稳定阳极对苯酚污染水的处理

Phenol Contaminated Water Treatment on Several Modified Dimensionally Stable Anodes.

作者信息

Jayathilaka Pavithra Bhakthi, Hapuhinna Kushani Umanga Kumari, Bandara Athula, Nanayakkara Nadeeshani, Subasinghe Nalaka Deepal

出版信息

Water Environ Res. 2017 Aug 1;89(8):687-693. doi: 10.2175/106143017X14839994522623. Epub 2016 Dec 23.

Abstract

Phenolic compounds are some of the most common hazardous organics in wastewater. Removal of these pollutants is important. Physiochemical method such as electrochemical oxidation on dimensionally stable anodes is more convenient in removing such organic pollutants. Therefore, this study focuses on development of three different anodes for phenol contaminated water treatment. The performances of steel/IrO2, steel/IrO2-Sb2O3, and Ti/IrO2-Sb2O3 anodes were tested and compared. Nearly 50, 76, and 84% of chemical oxygen demand removal efficiencies were observed for steel/IrO2, steel/IrO2-Sb2O3, and Ti/IrO2-Sb2O3 anodes, respectively. The formation of intermediates was monitored for three anodes and the Ti/IrO2-Sb2O3 anode showed the most promising results. Findings suggest that the developed anode materials can enhance phenol oxidation efficiency and that mixed metal oxide layer has major influence on the anode. Among the selected metal oxide mixtures IrO2-Sb2O3 was the most suitable under given experimental conditions.

摘要

酚类化合物是废水中一些最常见的有害有机物。去除这些污染物很重要。像在尺寸稳定阳极上进行电化学氧化这样的物理化学方法在去除此类有机污染物方面更为便捷。因此,本研究聚焦于开发三种不同的阳极用于处理含酚水。测试并比较了钢/二氧化铱、钢/二氧化铱 - 三氧化二锑以及钛/二氧化铱 - 三氧化二锑阳极的性能。钢/二氧化铱、钢/二氧化铱 - 三氧化二锑以及钛/二氧化铱 - 三氧化二锑阳极的化学需氧量去除效率分别约为50%、76%和84%。监测了三种阳极中间产物的形成情况,钛/二氧化铱 - 三氧化二锑阳极显示出最有前景的结果。研究结果表明,所开发的阳极材料可提高酚的氧化效率,并且混合金属氧化物层对阳极有重大影响。在所选择的金属氧化物混合物中,在给定实验条件下二氧化铱 - 三氧化二锑是最合适的。

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