Heterotrophic nitrification-aerobic denitrification performance of a novel strain, Pseudomonas sp. B-1, isolated from membrane aerated biofilm reactor

A heterotrophic nitrification-aerobic denitrification (HN-AD) strain isolated from membrane aerated biofilm reactor (MABR) was identified as Pseudomonas sp. B-1, which could effectively utilize multiple nitrogen sources and preferentially consume NH4–N. The maximum degradation efficiencies of NO3–N,...

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Veröffentlicht in:Environmental research 2023-03, Vol.220, p.115199-115199, Article 115199
Hauptverfasser: Lan, Meichao, Yin, Qingdian, Wang, Jixiao, Li, Ming, Li, Yi, Li, Baoan
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Sprache:eng
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Zusammenfassung:A heterotrophic nitrification-aerobic denitrification (HN-AD) strain isolated from membrane aerated biofilm reactor (MABR) was identified as Pseudomonas sp. B-1, which could effectively utilize multiple nitrogen sources and preferentially consume NH4–N. The maximum degradation efficiencies of NO3–N, NO2–N and NH4–N were 98.04%, 94.84% and 95.74%, respectively. The optimal incubation time, shaking speed, carbon source, pH, temperature and C/N ratio were 60 h, 180 rpm, sodium succinate, 8, 30 °C and 25, respectively. The strain preferred salinity of 1.5% and resisted heavy metals in the order of Mn2+ > Co2+ > Zn2+ > Cu2+. It can be preliminarily speculated from the results of enzyme assay that the strain removed nitrogen via full nitrification-denitrification pathway. The addition of strain into the conventional MABR significantly intensified the HN-AD performance of the reactor. The relative abundance of the functional bacteria including Flavobacterium, Pseudomonas, Paracoccus, Azoarcus and Thauera was obviously increased after the bioaugmentation. Besides, the expression of the HN-AD related genes in the biofilm was also strengthened. Thus, strain B-1 had great application potential in nitrogen removal process. [Display omitted] •HN-AD strain, named as Pseudomonas sp. B-1 was isolated from MABR.•The strain exhibited halophilic properties and could resist several heavy metals.•Strain may transformed nitrogen via full nitrification-denitrification pathway.•The bioaugmentation intensified the HN-AD performance of MABR.•The bioaugmentation increased the abundance of functional bacteria and genes.
ISSN:0013-9351
1096-0953
DOI:10.1016/j.envres.2022.115199