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Monitoring protozoa and metazoa biofilm communities for assessing wastewater quality impact and reactor up-scaling effects

机译:监测原生动物和后生生物膜群落,以评估废水质量影响和反应堆扩大规模的影响

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The succession of biofilm communities with special emphasis on ciliates, rotifers, and nematodes was monitored for half a year and compared to different operating conditions in order to evaluate plant performance and effect of up-scaling lab scale to large scale reactors. Ciliates and metazoa are able to rapidly change their communities as a reaction to changed plant operating conditions as has been proven true by comparing lab scale and pilot scale reactors. Even slight operational changes are causing major shifts in biofilm communities. Nematodes and rotifers in lab scale and large scale reactors seem to be in competition with peritrich ciliates. In both lab scale and pilot scale systems ciliates of the subclass Peritrichia proved to be dominant and thus to play an important role in both the species composition of the biofilm biocenosis and biofilm structure. Interpretation of biocenosis composition changes far large scale reactors is much more complex than for lab scale reactors. This conflicts with up-scaling of lab scale results to full scale reactors. [References: 27]
机译:连续半年监测了一系列生物膜群落,其中特别着重于纤毛,轮虫和线虫,并与不同的操作条件进行了比较,以评估工厂的性能以及将实验室规模扩大至大型反应器的效果。通过比较实验室规模和中试规模的反应器证明,纤毛虫和后生动物能够迅速改变其群落,以应对变化的工厂运行条件。即使是微小的操作变化也将导致生物膜群落的重大转变。实验室规模和大型反应器中的线虫和轮虫似乎与富虫纤毛竞争。在实验室规模和中试规模的系统中,Peritrichia亚类的纤毛虫均占主导地位,因此在生物膜生物群落的物种组成和生物膜结构中均起着重要作用。大型反应器的生物群落组成变化的解释要比实验室规模的反应器复杂得多。这与将实验室规模的结果按比例放大到全尺寸反应器相冲突。 [参考:27]

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