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Application of electrochemical treatment for the removal of triazine dye using aluminium electrodes

机译:电化学处理用铝电极去除三嗪染料的应用

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Textile effluents contain triazine-substituted reactive dyes that cause health problems such as cancer, birth defects, and hormone damage. An electrochemical process was employed effectively to degrade azo reactive dye with the aim of reducing the production of carcinogenic chemicals during biodegradation. Textile dye C.I. Reactive Red 2 (RR2), a model pollutant that contains dichloro triazine ring, was subjected to the electrocoagulation process using aluminium (Al) electrodes. A maximum of 97% of colour and 72% of chemical oxygen demand (COD) removal efficiencies were achieved and 9.5 kWh/kg dye electrical energy and 0.8 kg Al/kg dye electrode consumption were observed. The dye removal mechanism was studied by analysing the results of UV-Vis spectra of RR2 and treated samples at various time intervals during electrocoagulation. Fourier transform infrared (FTIR) spectra and energy dispersive X-ray (EDX) spectral studies were used for analysing the electrocoagulated flocs. The results indicate that in this process the dye gets removed by adsorption and there is no significant carcinogenic by-product formation during the degradation of dye.
机译:纺织品污水含有三嗪取代的反应性染料,导致癌症,出生缺损和激素损坏等健康问题。用电化学方法有效地利用,以降解偶氮活性染料,目的是在生物降解期间减少致癌化学品的产生。纺织染料C.I.反应性红色2(RR2),含有二氯三嗪环的模型污染物,使用铝(Al)电极进行电凝工艺。最多可获得97%的颜色和72%的化学需氧量(COD)去除效率,并且观察到9.5千瓦时/ kg染料电能和0.8kg Al / kg染料电极消耗。通过在电凝加工期间以各种时间间隔分析RR2的UV-Vis光谱和处理样品的结果来研究染料去除机制。傅里叶变换红外(FTIR)光谱和能量分散X射线(EDX)光谱研究用于分析电凝絮凝物。结果表明,在该过程中,通过吸附除去染料,并且在染料的降解期间没有显着的致癌致癌副产物。

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