Electron-acceptor-driven redox reconfiguration enables nitrogen polishing in a bioelectrochemical reactor operated in sequential batch mode

  • Divya, Mythili
  • Song, Young-Chae
  • Oa, Seong-Wook
  • Kim, Keug-Tae
  • Lee, Chae-Young
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초록

Bioelectrochemical systems offer a promising approach for nitrogen polishing of low-strength, carbon-limited wastewater; however, how electron-acceptor availability governs nitrogen conversion and electrochemical behaviour remains unclear. In this study, a bioelectrochemical sequencing batch reactor (BeSBR) and a control reactor were operated in sequencing batch mode, in which electron-acceptor conditions were sequentially varied within the same reactor system. The reactors were subjected to nitrite-abundant, nitrite-limited, nitrite-free, and oxygen-exposed phases, each maintained until stable performance was achieved. Nitrogen conversion was evaluated using cycle-based concentration profiles under steady-state conditions. Stable nitrogen polishing was achieved without external organic carbon addition, and powdered activated carbon (PAC) served as a conductive mediator supporting microbial retention and extracellular electron transfer. Nitrite-abundant conditions exhibited the most favourable electrochemical characteristics, while ammonium removal persisted under nitrite-limited and nitrite-free conditions, indicating adaptive nitrogen conversion under alternative electron acceptors. Kinetic analysis showed that ammonium removal exhibited approximately linear, zero-order-like behaviour under most conditions, with rates in the range of 2.0-2.5 mg N L-1 h-1, corresponding to removal of similar to 25 mg N L-1 within 10-12 h. Biomass stabilised at approximately 3,000-3,500 mg/L after initial reduction, indicating microbial adaptation. Microbial and functional analyses suggested multiple coexisting pathways, including nitrite-associated processes, dissimilatory nitrate reduction to ammonium, and sulfur-linked reactions. Overall, nitrogen conversion was governed by dynamic redox reconfiguration driven by electron-acceptor availability, rather than a single dominant pathway, highlighting its potential as an energy-efficient nitrogen polishing strategy.

키워드

Bioelectrochemical sequencing batch reactorextracellular electron transfernitrogen polishingcarbon-limited wastewaterredox reconfigurationAUTOTROPHIC DENITRIFICATIONCOD/N RATIOSP NOV.REMOVALNITRIFICATIONBACTERIUMAMMONIUMSYSTEM
제목
Electron-acceptor-driven redox reconfiguration enables nitrogen polishing in a bioelectrochemical reactor operated in sequential batch mode
저자
Divya, MythiliSong, Young-ChaeOa, Seong-WookKim, Keug-TaeLee, Chae-Young
DOI
10.1080/09593330.2026.2670481
발행일
2026-09
유형
Article
저널명
Environmental Technology (United Kingdom)
47
20
페이지
2873 ~ 2887