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OZONATION OF TERTIARY TREATED WASTEWATER – A SOLUTION FOR MICRO POLLUTANT REMOVAL

机译:第三次处理废水的臭氧 - 微污染物去除溶液

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The design criteria for wastewater treatment plants (WWTP) and the sludge retention time, respectively, have a significant impact on micropollutant removal. The upgrade of an Austrian municipal WWTP to nitrogen removal (best available technology, BAT) resulted in increased elimination of most of the analyzed micropollutants. Substances, such as bisphenol-A, 1 7a-ethinylestradiol and the antibiotics erythromycin and roxithromycin were only removed after the upgrade of the WWTP. Nevertheless, the BAT was not sufficient to completely eliminate these compounds. Thus, a pilot scale ozonation plant was installed for additional treatment of the effluent. The application of 0.6 g O_3 g DOC-1 increased the removal of most of the micropollutants, especially for compounds that were not degraded in the previous biological process, as for example carbamazepine and diclofenac. These results indicated that the ozonation of WWTP effluent is a promising technology to further decrease emissions of micropollutants from the treatment process. Additionally to the assessment of the removal potential for micropollutants, the technology was evaluated for the disinfection potential in regard to bacterial standard hygienic parameters and model viruses and the impact on acute and genotoxic activities. Furthermore the endocrine potential was investigated.
机译:污水处理厂(WWTP)和污泥保留时间的设计标准对微拷贝的去除产生了重大影响。奥地利市委的升级到氮气去除(最佳可用技术,BAT)导致消除大部分分析的微露剂。仅在WWTP升级后,仅除去酚-A,1 7A-乙烯醇二醇和抗生素红霉素和罗西霉素的物质。然而,蝙蝠不足以完全消除这些化合物。因此,安装了试验规模臭氧化厂以额外处理流出物。 0.6g O_3 g DoC-1的施用增加了大多数微量舒适剂的去除,特别是对于在先前的生物过程中没有降解的化合物,例如卡巴马嗪和双氯芬酸。这些结果表明,WWTP流出物的臭氧是一种有前途的技术,可以从治疗过程中进一步降低微渗透剂的排放。另外,评估微污染物的去除电位,对细菌标准卫生参数和模型病毒的消毒潜力和对急性和遗传毒性活动的影响进行评估。此外,研究了内分泌潜力。

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