膜生物反应器-超低压纳滤组合工艺处理城镇污水

Study on membrane bioreactor-ultra low-pressure selective nanofiltration for municipal wastewater treatment

  • 摘要: 针对再生水的高品质化和污泥的减量化问题,构建一套膜生物反应器-超低压纳滤组合工艺(MBR-DF)中试装置,以零排泥的方式运行处理城镇污水,同时建立一套传统活性污泥处理工艺(CAS),进水COD及NH^+_4-N、TN、TP浓度分别为87.0~165.7、14.0~31.0、14.2~32.4和2.5~3.3 mg/L。结果表明:浓水零排放MBR-DF系统对COD、NH^+_4-N和PO_4^3-具有较好的去除效果,去除率分别为95.7%、99.0%和68.5%。总溶解固体(TDS)和HCO^-_3的去除率分别为13.5%和31.1%,并能有效地降低出水总硬度。DF膜对PO_4^3-和SO_4^2-具有明显的截留作用,对NO^-_3截留效果较差,对HCO^-_3无截留作用。进水溶解性有机物(DOM)经MBR-DF后,出水中仅剩少量的类色氨酸类物质,且MBR-DF系统对进水DOM的UV254消减率达到94.9%,对DOC的去除率在98.0%以上,出水DOM的腐殖质向非腐殖质转化的程度较高。MBR-DF系统和CAS系统对17-β雌二醇(E2)的去除率分别为99.9%和70.8%,MBR-DF系统可有效降低出水回用过程中存在的健康隐患。

     

    Abstract: A pilot-scale experimental device of membrane bioreactor-ultra low-pressure selective nanofiltration (MBR-DF) was constructed to improve the quality of recycled water and the reduction of sludge. The MBR-DF hybrid system was used to treat the municipal sewage and operated in a zero-sludge manner, and a conventional activated sludge process (CAS) was established at the same time. The influent contents of COD, NH^+_4-N, TN and TP were 87.0-165.7, 14.0-31.0, 14.2-32.4, and 2.5-3.3 mg/L, respectively. The results showed that the concentrated water zero-emission MBR-DF system had a good removal effect on COD, NH^+_4-N and PO_4^3-, with the removal rates of 95.7%, 99.0% and 68.5%, respectively. The removal rates of TDS and HCO^-_3 were 13.5% and 31.1% accordingly, and the total hardness of the effluent could be reduced effectively. The DF membrane had a significant retention effect on PO_4^3- and SO_4^2-, had a poor retention effect on NO^-_3 and had no retention effect on HCO^-_3. After the influent DOM was passed through MBR-DF system, only a small amount of tryptophan-like substances remained. The UV254 reduction rate of the influent DOM was 94.9% and the DOC removal rate was above 98.0% in the MBR-DF system. The degree of conversion of humus to non-humus was higher in the effluent DOM. The removal rates of 17-β estradiol (E2) by MBR-DF system and CAS system were 99.9% and 70.8%, respectively. Therefore, MBR-DF system could effectively reduce the health hazards and ecological threats of effluent in recycling.

     

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