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Control of Microthrix parvicella and sludge bulking by ozone in a full-scale WWTP

机译:在大规模污水处理厂中,通过臭氧控制Microthrix parvicella和污泥膨胀

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摘要

Bulking and rising sludge are common problems in wastewater treatment plants (WWTPs) and are primarily caused by increased growth of filamentous bacteria such as Microthrix parvicella. It has a negative impact on sludge settling properties in activated sludge (AS) process, in addition to being responsible for foam formation. Different methods can be used to control sludge bulking. The aim of this study was to evaluate the dosage of on-site generated ozone in the recycled AS flow in a full-scale WWTP having problems caused by M. parvicella. The evaluation of the experiment was assessed by process data, microscopic analysis and microbial screening on the experimental and control line before, during and after the period of ozone dosage. The ozone treatment resulted in decreased abundance of M. parvicella and improved the settling properties, without impairing the overall process performance. Both chemical oxygen demand (COD)- and N-removal were unaffected and the dominant populations involved in nitrification, as analysed by fluorescent in situ hybridization, remained during the experimental period. When the ozone treatment was terminated, the problems with sludge bulking reappeared, indicating the importance of continuous evaluation of the process.
机译:膨胀和污泥增加是废水处理厂(WWTP)的常见问题,主要是由丝状细菌(如Microthrix parvicella)的生长增加引起的。除了造成泡沫形成外,它还对活性污泥(AS)工艺中的污泥沉降特性产生负面影响。可以使用不同的方法来控制污泥的膨胀。这项研究的目的是评估在由小枝支原体引起的问题的大规模污水处理厂中,在回收的AS流中现场产生的臭氧的剂量。在臭氧剂量使用之前,期间和之后,通过过程数据,显微镜分析和实验和对照生产线上的微生物筛选对实验进行评估。臭氧处理可导致小枝分枝杆菌的丰度降低,并改善沉降性能,而不会损害整个过程的性能。实验期间,通过荧光原位杂交分析,化学需氧量(COD)去除和氮去除均不受影响,硝化作用的主要种群仍然存在。当臭氧处理终止时,污泥膨胀的问题再次出现,表明对工艺进行持续评估的重要性。

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