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使用低铁浓度的芬顿和类芬顿体系降解偶氮染料。

Degradation of azo dyes using low iron concentration of Fenton and Fenton-like system.

作者信息

Hsueh C L, Huang Y H, Wang C C, Chen C Y

机构信息

Department of Chemical Engineering, National Cheng Kung University, Tainan City 701, Taiwan.

出版信息

Chemosphere. 2005 Mar;58(10):1409-14. doi: 10.1016/j.chemosphere.2004.09.091.

Abstract

This study investigated Fenton and Fenton-like reactions at low iron concentration (<or==10 mg l-1) to oxidize three commercial azo dyes, namely Red MX-5B, Reactive Black 5 and Orange G. In some local cases in Taiwan, wastewater color was found to be the only problem in meeting local effluent standards. This investigation reveals that both of these methods can remove the color of these dyes completely. Moreover they only produce little sludge in wastewater that meet local effluent standards and do not need to further treat. The effects of Fe2+, Fe3+, H2O2 and solution pH on dye decolorization are demonstrated in detail. The optimum pH for both Fenton and Fenton-like reactions in this study are about pH 2.5-3.0. Increasing the dose of ferric nitrate enhances the dye decolorization. The optimal levels of H2O2 required for the process are also examined. High levels of H2O2 appear to reduce dye decolorization. In addition, it is also found that decolorization of azo dyes undergoes a faster reaction rate than mineralization of azo dyes.

摘要

本研究调查了在低铁浓度(≤10 mg l-1)下的芬顿反应和类芬顿反应,以氧化三种商业偶氮染料,即红色MX - 5B、活性黑5和橙色G。在台湾的一些当地案例中,发现废水颜色是达到当地排放标准的唯一问题。本调查表明,这两种方法都能完全去除这些染料的颜色。此外,它们在达到当地排放标准的废水中只产生少量污泥,无需进一步处理。详细展示了Fe2+、Fe3+、H2O2和溶液pH对染料脱色的影响。本研究中芬顿反应和类芬顿反应的最佳pH约为2.5 - 3.0。增加硝酸铁的剂量可提高染料脱色效果。还研究了该过程所需的最佳H2O2水平。高浓度的H2O2似乎会降低染料脱色效果。此外,还发现偶氮染料的脱色反应速率比重氮化反应速率更快。

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