γ蛋白杆菌
Β-变形菌
微生物种群生物学
α蛋白细菌
蛋白质细菌
相对物种丰度
微生物
作文(语言)
生物
放线菌门
丰度(生态学)
生态学
细菌
哲学
遗传学
16S核糖体RNA
语言学
作者
Shilong Li,Liang Duan,Yang Zhao,Fu Gao,Slawomir W. Hermanowicz
出处
期刊:Membranes
[Multidisciplinary Digital Publishing Institute]
日期:2023-03-11
卷期号:13 (3): 324-324
被引量:7
标识
DOI:10.3390/membranes13030324
摘要
Membrane biofilm reactors (MBfRs) have attracted more and more attention in the field of wastewater treatment due to their advantages of high mass transfer efficiency and low-carbon emissions. There are many factors affecting their nitrogen removal abilities, such as operation time, electron donor types, and operation modes. The operation time is directly related to the growth status of microorganisms, so it is very important to understand the effect of different operation times on microbial composition and community succession. In this study, two parallel H2-based MBfRs were operated, and differences in microbial composition, community succession, and NO3−-N removal efficiency were investigated on the 30th day and the 60th day of operation. The nitrogen removal efficiency of MBfRs with an operation time of 60 days was higher than that of MBfRs with an operation time of 30 days. Proteobacteria was the dominant phylum in both MBfRs; however, the composition of the microbial community was quite different. At the class level, the community composition of Proteobacteria was similar between the two MBfRs. Alphaproteobacteria was the dominant class in MBfR, and Betaproteobacteria and Gammaproteobacteria were also in high proportion. Combined with the analysis of microbial relative abundance and concentration, the similarity of microbial distribution in the MBfRs was very low on day 30 and day 60, and the phylogenetic relationships of the top 50 dominant universal bacteria and Proteobacteria were different. Although the microbial concentration decreased with the extension of the operation time, the microbial abundance and diversity of specific functional microorganisms increased further. Therefore, the operation time had a significant effect on microbial composition and community succession.
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