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On-site treatment of dyeing wastewater by a bio-photoreactor system

机译:生物光反应器系统现场处理印染废水

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Synthetic dyeing wastewater consisting of the three different commercial dyes with different strengths of COD (about 900 and 3000 mg/l respectively) was initially treated by an aerobic biological process, Intermittently Decanted Extended Aeration reactor (IDEA), for BOD removal, and then continuously treated by a TiO2 sensitised photoreactor for a further COD removal and decolorization. The catalysed photooxidation process can degrade those non-biodegradable organic substances in the effluent treated by the IDEA process and also decolorize the effluent completely. It is also found that some nonbiodegradable organic substances can be converted to biodegradable forms by the sensitized photo-oxidation reaction. A bio-photoreactor system was designed to combine this photocatalytic reactor with the IDEA reactor for the treatment of dyeing wastewater. The performance of this combined bio-photoreactor system with and without recirculation was investigated and compared. The system with recycled water has similar efficiency for decolorization and COD removal to that without recirculation, but has a high capacity to eliminate the effects caused by a shock loading, and also the system can treat dyeing wastewater with a higher organic concentration.
机译:最初采用好氧生物工艺(间歇倾析扩展曝气反应器(IDEA))处理由三种不同化学需氧量(分别为900和3000 mg / l)组成的合成染料废水,以去除BOD,然后连续进行经TiO2增感光反应器处理后,可进一步去除COD和脱色。催化的光氧化过程可以降解经IDEA处理的废水中的那些不可生物降解的有机物质,也可以使废水完全脱色。还发现一些不可生物降解的有机物质可以通过敏化光氧化反应转化为可生物降解的形式。设计了一个生物光反应器系统,以将该光催化反应器与IDEA反应器结合使用,以处理印染废水。研究和比较了具有和不具有再循环的这种组合的生物光反应器系统的性能。使用循环水的系统在脱色和去除COD方面的效率与不使用再循环系统相似,但是具有消除冲击负荷所产生的影响的高容量,并且该系统还可以处理有机浓度更高的印染废水。

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