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Effects of different wastewater characteristics and treatment techniques on the bacterial community structure in three pharmaceutical wastewater treatment systems

机译:三种制药废水处理系统中不同废水特性和处理技术对细菌群落结构的影响

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Pharmaceutical wastewater is a typical type of wastewater with high concentrations of organic pollutants, but research on this subject is limited. The aeration tanks of three different pharmaceutical wastewater treatment systems were seeded with the same inocula and stably operated for 40 days. Then, aerobic sludge samples from the three aeration tanks were collected to provide insight into the bacterial community composition of the activated sludges. Additionally, we investigated the effects of wastewater characteristics and the type and operation of the technological system on the microbial communities. High-throughput sequencing analysis demonstrated that the communities enriched in the three reactors had differing. The dominant phyla detected were Proteobacteria, Chloroflexi, Bacteroidetes and candidate division TM7, while the dominant clones were uncultured Candidatus Saccharibacteria bacterium, uncultured Saprospiraceae bacterium, PHOS-HE51(AF314433.1), uncultured Anaerolineaceae bacterium and Blastocatella, suggesting their importance in pharmaceutical wastewater treatment plants. According to the wastewater parameters and canonical correspondence analyses, we can conclude that uncultured Candidatus Saccharibacteria bacterium, uncultured Anaerolineaceae bacterium and Blastocatella contribute to ammonium nitrogen () removal; uncultured Saprospiraceae bacterium plays an important role in treating nitrogen; and chemical oxygen demand and PHOS-HE51 contribute to total phosphorus removal.
机译:制药废水是一种典型的高浓度有机污染物废水,但是对此问题的研究是有限的。在三种不同的制药废水处理系统的曝气池中接种相同的接种物,并稳定运行40天。然后,从三个曝气池中收集好氧污泥样品,以深入了解活性污泥的细菌群落组成。此外,我们调查了废水特性以及技术系统的类型和操作对微生物群落的影响。高通量测序分析表明,三个反应堆中富集的群落有所不同。检测到的主要菌群是Proteobacteria,Chloroflexi,Bacteroidetes和候选分裂TM7,而主要的克隆是未培养的假丝酵母菌,未培养的腐菌科细菌,PHOS-HE51(AF314433.1),未培养的厌氧杆菌科细菌和Blastocatella废水,这表明它们的重要性。处理厂。根据废水参数和典型对应分析,我们可以得出结论,未培养的假丝酵母菌,未培养的厌氧杆菌科细菌和芽孢杆菌均有助于去除铵态氮。未经培养的腐霉菌细菌在处理氮中起重要作用。化学需氧量和PHOS-HE51有助于总磷的去除。

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