Heterotrophic nitrification-aerobic denitrification performance in a granular sequencing batch reactor supported by next generation sequencing

被引:34
作者
Bucci, Paula [1 ]
Coppotelli, Bibiana [2 ]
Morelli, Irma [2 ,3 ]
Zaritzky, Noemi [1 ,4 ]
Caravelli, Alejandro [1 ]
机构
[1] UNLP, Ctr Invest & Desarrollo Criotecnol Alimentos, CONICET, CIC,CCT La Plata,Fac Ciencias Exactas, 47&116 B1900AJJ, RA-47116 La Plata, Argentina
[2] UNLP, CONICET, Ctr Invest & Desarrollo Fermentac Ind, CINDEFI,CCT La Plata, Buenos Aires, DF, Argentina
[3] CIC PBA, La Plata, Argentina
[4] Univ Nacl La Plata, Fac Ingn, La Plata, Buenos Aires, Argentina
关键词
Heterotrophic nitrification; Aerobic denitrification; Online monitoring; Bacterial Composition; PYCRUSt; Next generation sequencing; DENITRIFYING BACTERIUM; NITROGEN-REMOVAL; MICROBIAL COMMUNITIES; DISSOLVED-OXYGEN; ORGANIC-CARBON; FREE AMMONIA; SLUDGE; OXIDATION; REDUCTION; NITRATE;
D O I
10.1016/j.ibiod.2021.105210
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Several nitrogen transformation processes occur in wastewater treatment; among them, heterotrophic nitrification-aerobic denitrification (HNAD) has not been adequately quantified. In the present study, a comprehensive analysis of the simultaneous ammonia and organic carbon removal was carried out in an aerobic granular sequencing batch reactor (SBR) operated under feast/famine regime. For this, biological processes, microbial community composition and metabolic pathways were evaluated. Mass balances allowed estimating the ammonia assimilation and simultaneous nitrification and denitrification (SND). Better SND process (55%) was achieved in starvation period involving that denitrification driven by intracellular carbon reserves is more efficiently coupled to the ammonia oxidation with regard to external carbon-driven denitrification. Proton balances and titration monitored the organic carbon and nitrogen removal. High abundance of HNAD bacteria, Diaphorobacter sp. and Flavobacterium sp., and Zoogloea sp. aerobic denitrifier was detected by next generation sequencing (NGS) technology. Bioinformatics analysis predicted enzymes involved in nitrogen transformation pathways present in Phylogenetic investigation PYCRUSt database. Heterotrophic nitrification took place involving detoxification against ammonia. Non-limiting nitrate and high oxygen concentrations were favorable for aerobic denitrifiers. HNAD was the main process responsible for the biological nitrogen removal according to NGS and operational conditions given by high dissolved oxygen and low COD:NO3? -N ratio.
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页数:12
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