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Strategies for the reduction of Legionella in biological treatment systems

机译:减少生物处理系统中军团菌的策略

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A community-wide outbreak of Legionnaire's disease occurred in Warstein, Germany, in August 2013. The epidemic strain, Legionella pneumophila Serogruppe 1, was isolated from an industrial wastewater stream entering the municipal wastewater treatment plant (WWTP) in Wartein, the WWTP itself, the river Waster and air/water samples from an industrial cooling system 3 km downstream of the WWTP. The present study investigated the effect of physical-chemical disinfection methods on the reduction of the concentration of Legionella in the biological treatment and in the treated effluent entering the river Waster. Additionally, to gain insight into the factors that promote the growth of Legionella in biological systems, growth experiments were made with different substrates and temperatures. The dosage rates of silver micro-particles, hydrogen peroxide, chlorine dioxide and ozone and pH stress to the activated sludge were not able to decrease the number of culturable Legionella spp. in the effluent. Nevertheless, the UV treatment of secondary treated effluent reduced Legionella spp. on average by 1.6-3.4 log units. Laboratory-scale experiments and full-scale measurements suggested that the aerobic treatment of warm wastewater (30-35 degrees C) rich in organic nitrogen (protein) is a possible source of Legionella infection.
机译:2013年8月,德国沃斯坦市发生了军团病爆发的全社区爆发。该流行病菌,嗜肺军团菌Serogruppe 1,是从进入沃特因市市政污水处理厂(WWTP)的工业废水中分离出来的,废水处理厂下游3公里处的工业冷却系统中的河废物和空气/水样本。本研究调查了物理化学消毒方法在生物处理和进入Waster河的处理后废水中降低军团菌浓度的影响。另外,为了深入了解促进军团菌在生物系统中生长的因素,使用不同的底物和温度进行了生长实验。银微粒,过氧化氢,二氧化氯和臭氧的剂量率以及对活性污泥的pH应力均不能减少可培养军团菌的数量。在废水中。然而,紫外线的二次处理废水减少了军团菌属菌种。平均减少1.6-3.4个对数单位。实验室规模的实验和全面的测量表明,对富含有机氮(蛋白质)的温热废水(30-35摄氏度)进行好氧处理可能是军团菌感染的来源。

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