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NO emission and bacterial community dynamics during realization of the partial nitrification process. | LitMetric

AI Article Synopsis

  • The study examined greenhouse gas emissions and microbial changes during the partial nitrification (PN) process, finding that NO emissions predominantly occurred in the aerobic stage, releasing about 20 mg of gas per cycle.
  • A positive relationship was identified between dissolved NO concentration and temperature, suggesting that temperature influences gas emission levels.
  • High-throughput sequencing revealed significant shifts in microbial communities, with aerobic bacteria becoming more prevalent while anaerobic bacteria and denitrifying organisms like anammox decreased, highlighting the dynamic nature of microbial populations during PN startup.

Article Abstract

In this study, greenhouse gas emissions and microbial community succession during the realization of the partial nitrification (PN) process were studied. The results show that NO emission mainly occurred in the aerobic stage and the PN reactor released about 20 mg of NO gas each cycle. There is a positive correlation between the dissolved NO concentration and the temperature of a typical cycle. High-throughput sequencing was used to illustrate succession in the microbial community structure. The most significant microfloral change during the PN startup process was that some aerobic bacteria were relatively enriched and some anaerobic bacteria were weeded out. The ammonia oxidizing bacteria (AOB) like Nitrosomonadaceae were enriched on account of the suitable external environment. whose main function is denitrification declined and (anammox) showed the same tendency. This study comprehensively demonstrates the fluctuations of dissolved and emitted NO while researching the succession of the microbial community in the culture of the PN process.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9082017PMC
http://dx.doi.org/10.1039/c8ra03032dDOI Listing

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