首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Sequential electrochemical oxidation and bio-treatment of the azo dye congo red and textile effluent
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Sequential electrochemical oxidation and bio-treatment of the azo dye congo red and textile effluent

机译:偶氮染料刚果红和纺织废水的顺序电化学氧化与生物处理

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摘要

Textile effluent is often difficult to manage as it contains a high concentration of toxic and recalcitrant synthetic dyes. In this study, congo Red and textile effluent were treated by electrochemical oxidation using RuO2-IrO2 coated titanium electrode as an anode followed by biodecolorization using Pseudomonas stutzeri MN1 and Acinetobacter baumannii MN3. Effluent pre-treatment is often necessary to minimize the inhibitory effects of textile dyes on dye degrading bacterial during bio-treatment. The pre-treatment of Congo Red by electrochemical oxidation for 10 min resulted in a decolorization rate of 98% at a pH, NaCl concentration, and current density of 7, 2 g L-1, and 20 mA cm(-2). Subsequent bio-treatment of the pretreated Congo Red enhanced the biodegradation to 93%. The COD removal efficiency in real textile effluent following electrochemical pretreatment and biological treatment using bacterial consortium were 3.8% and 93%, respectively. Therefore, integrating electrochemical oxidation and microbial consortia offers an effective and environmentally friendly approach for treating complex industrial effluents.
机译:纺织品出水通常难以管理,因为它含有高浓度的毒性和顽固的合成染料。在该研究中,使用Ruo2-IRO2涂覆的钛电极作为阳极通过电化学氧化处理刚果红色和纺织品流出物,然后使用假单胞菌符号MN1和肺杆菌Baumannii Mn3进行生物焦化。流出物预处理通常是必要的,以最小化纺织品染料在生物处理期间染料降解细菌的抑制作用。通过电化学氧化将刚果红色预处理10分钟,得到98%的pH,NaCl浓度,电流密度为7,2gL-1和20 mAcm(-2)的脱色率。随后的预处理刚果红生物治疗增强了生物降解至93%。在电化学预处理之后实际纺织废水中的COD去除效率分别使用细菌联盟的生物处理分别为3.8%和93%。因此,整合电化学氧化和微生物共聚物为治疗复杂的工业流出物提供了有效和环保的方法。

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