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Simultaneous decolorization and degradation of azo dye with electricity generation in microbial fuel cells

机译:微生物燃料电池中偶氮染料的同时脱色与降解

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Dye wastewater is representative of highly colored effluent that is resistant to biodegradation and should be decolorized before discharge. The investigation into the decolorization and degradation of simulated dye wastewater containing the azo dye C.I. Acid Orange 7 (AO7) with simultaneous electricity generation in microbial fuel cells (MFCs) is described. Electrons obtained from organics oxidation were consumed for AO7 decolorization and electricity generation in the MFCs. The maximum power density obtained was 5.0 W/m3 for single-chamber MFCs employing glucose as fuel with the presentation of AO7. Nearly complete decolorization and degradation (97%) were achieved after 168 h operation. Furthermore, the decolorization efficiencies increased by factors of about 1.7 and 1.1, comparing the color absorbance with adsorption by granular graphite and open-circuit MFCs, respectively. Results indicate that MFCs can enhance decolorization and degradation of azo dyes such as AO7 with electricity generation compared with traditional methods, providing an effective alternative for dye wastewater treatment and energy recovery.
机译:染料废水代表着高度着色的废水,该废水具有抗生物降解性,应在排放前脱色。含偶氮染料C.I.的模拟染料废水的脱色和降解研究描述了同时在微生物燃料电池(MFC)中发电的酸性橙7(AO7)。从有机物氧化中获得的电子被消耗用于MFC中的AO7脱色和发电。对于采用葡萄糖作为燃料的单室MFC,在AO7的作用下,获得的最大功率密度为5.0 W / m 3 。 168小时运行后,几乎实现了完全脱色和降解(97%)。此外,将色吸收率与粒状石墨和开路MFC的吸附率进行了比较,脱色效率分别提高了1.7和1.1倍。结果表明,与传统方法相比,MFCs可以通过发电增强偶氮染料(如AO7)的脱色和降解,为染料废水处理和能量回收提供了有效的替代方法。

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