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Comparison of nitrification performance and microbial community between submerged membrane bioreactor and conventional activated sludge system

机译:潜水膜生物反应器与常规活性污泥系统硝化性能和微生物群落的比较

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A submerged membrane bioreactor (SMBR) and a conventional activated sludge system (CAS) were compared in parallel over a period of more than 260 days on treating synthetic ammonia-bearing inorganic wastewater without sludge purge under decreased hydraulic retention times (HRTs). Conversion of NH4+-N to NO3--N was achieved with an efficiency of over 98 % at an HRT >= 10 h in the SMBR, while similar performance was obtained at an HRT >= 20 In in the CAS. Denaturing gradient gel electrophoresis (DGGE) of polymerase chain reaction (PCR) amplified 16S rDNA was used to monitor variations of community structures in the two systems. With the prolongation of operation, the number of DGGE bands in the SMBR gradually increased from the initial II bands to the final 22 bands, whereas that in the CAS varied in a range between 13 and 183 Sequence analysis indicates that Nitrosomonas sp. and Nitrospira sp. were the dominating nitrification species responsible for ammonia and nitrite oxidation, respectively. Heterotrophic bacteria like Pseudomonas sp. and Flavobacteria sp. existed in both of the systems although only inorganic wastewater was fed. Substantive accumulation of extracellular polymeric substances (EPS) in the SMBR was confirmed by scanning electron microscopy and EPS analysis.
机译:在超过260天的时间里,同时比较了水下膜生物反应器(SMBR)和常规活性污泥系统(CAS)在减少水力停留时间(HRT)的情况下处理合成的含氨无机废水而没有污泥净化的情况。在SMBR中,当HRT> = 10 h时,NH4 + -N转化为NO3--N的效率超过98%,而在CAS中,当HRT> = 20 In时,可获得类似的性能。聚合酶链反应(PCR)扩增的16S rDNA的变性梯度凝胶电泳(DGGE)用于监测两个系统中群落结构的变化。随着操作时间的延长,SMBR中的DGGE波段的数量从最初的II波段逐渐增加到最终的22个波段,而CAS中的DGGE波段则在13到183之间变化。和Nitrospira sp。是主要的硝化物种,分别负责氨和亚硝酸盐的氧化。异养细菌,如假单胞菌。和黄杆菌属。尽管只喂无机废水,但两个系统都存在。通过扫描电子显微镜和EPS分析证实了SMBR中大量的细胞外聚合物(EPS)积累。

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