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PMID: 41490678 Published · ppublish English

Irreversible nitrite-oxidising bacteria inhibition by operational shutdowns for high‑ammonia wastewater treatment: from mechanism insights to pilot‑scale granular sludge reactor verification.

Bioresource technology ·Vol. 444 ·2026-03-00

Kong L, Xie M, Sun H, Zou X, Xu J, Lu Y, Liu Y

Abstract

Short-cut nitrogen removal is a promising strategy for treating high-ammonia wastewaters but is hindered by the persistence of nitrite-oxidising bacteria (NOB). This study evaluated whether operational shutdowns could selectively suppress NOB while preserving ammonia-oxidising bacteria (AOB) in granular sludge reactors (GSRs). Batch assays exposed sludge to 3-20 days of shutdown followed by reactivation. Shutdowns longer than 3 days caused irreversible NOB activity loss and four-log decreases in nxrB abundance, whereas AOB maintained stable amoA copies and showed increased expression after reactivation. Pilot-scale validation in a 275-L GSR treating high-ammonia centrate confirmed these findings, demonstrating stabilised ammonia removal, enhanced granulation, and improved biomass retention and settling. Microbial community analysis revealed enrichment of Nitrosomonas europaea after short shutdowns and Nitrosomonas eutropha under prolonged starvation. Overall, shutdowns provide a simple and effective strategy for selective NOB suppression, enabling resilient partial nitritation and practical sludge preservation for full-scale emergency management.

Keywords
Aeration and ammonia starvation Centrate treatment pilot Granule formation in GSR High ammonia treatment NOB inhibition in PN/DN
Article Info
Journal
Bioresource technology
Abbr.
Bioresour Technol
ISSN
1873-2976
Corresponding email
Published
2026-03-00
Language
English
Country/Region
England
NLM ID
9889523
Analysis Services
Analysis Services

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