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Fate of organic pollutants in a pilot-scale membrane bioreactor-nanofiltration membrane system at high water yield in antibiotic wastewater treatment

机译:中试规模膜生物反应器-纳滤膜系统中高污染有机废水的命运

摘要

A double membrane system combining a membrane bioreactor (MBR) with a nanofiltration (NF) membrane at the pilot scale was tested to treat real antibiotic wastewater at a pharmaceutical company in Wuxi (China). The water yield of the pilot system reached over 92 +/- 5.6% through recycling the NF concentrate to the MBR tank. Results showed that the pilot scale system operated in good conditions throughout the entire experiment period and obtained excellent water quality in which the concentrations of chemical oxygen demand and total organic carbon were stable at 35 and 5.7 mg/L, respectively. The antibiotic removal rates of both spiramycin (SPM) and new spiramycin in wastewater were over 95%. Organics analysis results showed that the main organics in the biological effluent were proteins, soluble microbial by-product-like, fulvic acid-like and humic-like substances. These organics could be perfectly rejected by the NF membrane. Most of the organics could be removed through recycling NF concentrate to the MBR tank and only a small part was discharged with NF concentrate and permeate.
机译:在无锡​​(中国)的一家制药公司对中试规模的膜生物反应器(MBR)与纳滤(NF)膜相结合的双膜系统进行了测试,以处理实际的抗生素废水。通过将NF浓缩液再循环到MBR储罐,中试系统的水产率达到92 +/- 5.6%。结果表明,中试规模系统在整个实验期间均处于良好状态,并获得了优异的水质,化学需氧量和总有机碳的浓度分别稳定在35和5.7 mg / L。螺旋霉素(SPM)和新螺旋霉素在废水中的抗生素去除率均超过95%。有机物分析结果表明,生物废水中的主要有机物是蛋白质,可溶性微生物副产物,黄腐酸和腐殖质。这些有机物可以被NF膜完全排斥。通过将NF浓缩液再循环到MBR罐中,可以除去大部分有机物,只有一小部分与NF浓缩液和渗透液一起排出。

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