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Removal of pharmaceutical residues using ozonation as intermediate process step at Linkoping WWTP, Sweden

机译:瑞典林雪平污水处理厂使用臭氧化处理作为中间工艺步骤去除药物残留

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摘要

Pilot tests as basis for the design, implementation and operation of a future full-scale oxidation plant completing the existing sewage treatment in Linkoping, Sweden, were performed. Using an ozonation step between bio-sedimentation and post-denitrification processes, the primary goal was the removal of the highest priority substances to effluent water levels that will not cause adverse effects in the recipient considering the natural dilution. The study included initial emission screenings, dose control trials, treatment performance studies and eco-toxicity studies. At an ozone dose of 5 mg O-3/L, most substances could be removed. Ecotoxicological tests showed no negative effect for the tested ozone doses. High levels of oxygen into the denitrification could be rapidly reduced in the biology. The number of bacteria in the treated water could be significantly reduced even at relatively low ozone doses. Based on these results, the planning for the full-scale implementation of the treatment system was initiated in 2015.
机译:进行了试验测试,作为设计,实施和运营未来的大型氧化工厂的基础,该工厂将完成瑞典林雪平的现有污水处理。在生物沉降和反硝化后的过程之间使用臭氧化步骤,主要目标是去除废水中水位最高的物质,考虑到自然稀释,这些水不会对接受者造成不利影响。该研究包括初始排放物筛选,剂量控制试验,治疗性能研究和生态毒性研究。臭氧剂量为5 mg O-3 / L时,大多数物质都可以去除。生态毒理学测试表明,测试的臭氧剂量没有负面影响。在生物学中可以迅速减少反硝化过程中的高含量氧气。即使在相对较低的臭氧剂量下,经过处理的水中的细菌数量也可以大大减少。基于这些结果,治疗系统的全面实施计划于2015年启动。

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