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The color removal and fate of organic pollutants in a pilot-scale MBR-NF combined process treating textile wastewater with high water recovery

机译:MBR-NF中试规模处理高回收率纺织废水的有机污染物的脱色和去色

摘要

A combination of membrane bioreactor (MBR) and nanofiltration (NF) was tested at pilot-scale treating textile wastewater from the wastewater treatment station of a textile mill in Wuqing District of Tianjin (China). The MBR-NF process showed a much better treatment efficiency on the removal of the chemical oxygen demand, total organic carbon, color and turbidity in comparison with the conventional processes. The water recovery rate was enhanced to over 90% through the recycling of NF concentrate to the MBR, while the MBR-NF showed a stable permeate water quality that met with standards and could be directly discharged or further reused. The recycled NF concentrate caused an accumulation of refractory compounds in the MBR, which significantly influenced the treatment efficiency of the MBR. However, the sludge characteristics showed that the activated sludge activity was not obviously inhibited. The results of fluorescence spectra and molecular weight distribution indicated that those recalcitrant pollutants were mostly protein-like substances and a small amount of humic acid-like substances (650-6,000 Da), which contributed to membrane fouling of NF. Although the penetrated protein-like substances caused the residual color in NF permeate, the MBR-NF process was suitable for the advanced treatment and reclamation of textile wastewater under high water yield.
机译:膜生物反应器(MBR)和纳滤(NF)的组合在中试处理天津市武清区一家纺织厂废水处理站的纺织废水中进行了测试。与常规方法相比,MBR-NF工艺在去除化学需氧量,总有机碳,颜色和浊度方面显示出更好的处理效率。通过将NF浓缩物再循环到MBR,水的回收率提高到90%以上,而MBR-NF则显示出稳定的渗透水质,符合标准,可以直接排放或进一步再利用。回收的NF浓缩物导致MBR中难熔化合物的积累,这极大地影响了MBR的处理效率。但是,污泥特性表明,活性污泥的活性没有受到明显的抑制。荧光光谱和分子量分布的结果表明,顽固性污染物主要为蛋白质样物质,少量腐殖酸样物质(650-6,000 Da),造成了NF的膜污染。尽管渗透的蛋白样物质会导致NF渗透液中残留颜色,但MBR-NF工艺适用于高产量下纺织品废水的深度处理和回收。

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