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Impact of activated sludge process configuration on removal of micropollutants and estrogenicity

机译:活性污泥工艺配置对去除微量污染物和雌激素的影响

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摘要

The efficacy of three different wastewater treatment configurations, conventional activated sludge (CAS), nitrifying activated sludge (NAS) and biological nutrient removal (BNR) for removal of selected micropollutants from authentic wastewater was investigated. The processes were also characterized based on their proficiency to reduce the estrogenic activity of the influent wastewater using the in vitro recombinant yeast assay. The removal efficiency of trimethoprim improved with the complexity of the three treatment process configurations. Ibuprofen, androstendione, sulfamethoxazole, nonylphenol, estrone and bisphenol-A had moderate to high removals (> 65%) while carbamazepine and meprobamate remained recalcitrant in the three treatment process configurations. The removal of gemfibrozil was better in the NAS than in BNR and CAS treatment configurations. The yeast estrogen screen (YES) assay analyses showed an improvement in estrogenicity removal in the BNR and NAS treatment configurations as compared to the CAS treatment configuration. Comparing the estrogenic responses from the three treatment configurations, the removal efficiencies followed the order of BNR = NAS > CAS and all were greater than 81%.
机译:研究了三种不同废水处理配置(常规活性污泥(CAS),硝化活性污泥(NAS)和生物营养去除剂(BNR))从真实废水中去除选定的微污染物的功效。还使用体外重组酵母测定法基于其降低入水废水的雌激素活性的能力对工艺进行了表征。甲氧苄啶的去除效率随着三种处理工艺配置的复杂性而提高。布洛芬,雄烯二酮,磺胺甲基异恶唑,壬基酚,雌酮和双酚-A的去除率中等至较高(> 65%),而卡马西平和甲氨蝶呤在这三种处理工艺中均保持顽固性。与BNR和CAS治疗配置相比,NAS中吉非贝齐的清除效果更好。酵母雌激素筛查(YES)分析表明,与CAS处理方案相比,BNR和NAS处理方案的雌激素去除效果有所改善。比较三种处理方式的雌激素反应,去除效率遵循BNR = NAS> CAS的顺序,且均大于81%。

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