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Treatment and reuse of printing and dyeing wastewater using BAF/DM technology

机译:使用BAF / DM技术处理和再利用印染废水

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In the paper, the integrated wastewater reclamation system of the combined biological aerated filter (BAF) and dynamic membrane (DM) technology was feasible and effective for dyeing and printing wastewater treatment. The experiment was carried out continuously under of the optimal condition of hydraulic retention time (HRT) of 1.0 h, pH of 7.0–8.5, temperature of 25–30°C and an air/water volume flow ratio about 2:1 in the biological aerated filter reactor, and that dynamic membrane was run at an optimal of the operating pressure of 0.15MPa, and the cross-flow velocity of 1m/s. The results showed that the average concentration of COD, color and turbidity in the effluent were less than 50 mg/L, 15 times, 2NTU, respectively. The average COD, color, turbidity removal efficiencies were 90%, 91% and 90% respectively. The experimental results showed that showed that the integrated wastewater reclamation system is increasingly considered as a competitive method to printing and dyeing wastewater treatment.
机译:本文提出了将曝气生物滤池与动态膜技术相结合的废水综合处理系统,对印染废水的处理是可行和有效的。在生物体内的水力停留时间(HRT)为1.0 h,pH值为7.0–8.5,温度为25–30°C和空气/水体积流量比约为2:1的最佳条件下连续进行该实验。加气过滤反应器,该动态膜在0.15MPa的最佳工作压力和1m / s的错流速度下运行。结果表明,出水中COD,颜色和浊度的平均浓度分别小于50 mg / L,15倍,2NTU。平均COD,颜色,浊度去除效率分别为90%,91%和90%。实验结果表明,集成式废水回收系统已被越来越多地视为印染废水处理的竞争方法。

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