4.5 Article

Low-concentration methanol effect on the microorganisms, nitrogen removal, and recovery of the completely autotrophic nitrogen removal over nitrite

期刊

WATER SCIENCE AND TECHNOLOGY
卷 87, 期 1, 页码 130-143

出版社

IWA PUBLISHING
DOI: 10.2166/wst.2022.417

关键词

anammox bacteria; completely autotrophic nitrogen removal over nitrite; low-concentration methanol effect; nitrifying oxidizing bacteria; nitrogen removal

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This research investigates the effect of low-concentration methanol on the functional microorganisms and nitrogen removal in the CANON system. The results show that low-concentration methanol suppresses the anaerobic ammonium-oxidizing bacteria (AnAOB) activity while promoting the nitrifying oxidizing bacteria (NOB) activity. This leads to a decrease in the removal rate of ammonium nitrogen and total nitrogen. However, the CANON system demonstrates a high self-healing ability when methanol supply is stopped.
Methanol has a significant effect on the performance of the completely autotrophic nitrogen removal over nitrite (CANON) process. In this research, the effect of low-concentration methanol on the functional microorganisms and nitrogen removal and recovery in the CANON system is investigated. The result shows that the anaerobic ammonium-oxidizing bacteria (AnAOB) was suppressed with low-concentration methanol addition, and the phylum Planctomycetes was hidden. The genus Candidatus Brocadia was restrained, and the relative abundances reduced from 25.5% to 15.0% in the upper biofilm and from 20.3% to 14.3% in the bottom biofilm, respectively. However, low-concentration methanol promoted the nitrifying oxidizing bacteria (NOB) activity. This phenomenon reduced the average ammonium nitrogen removal rate from 95.0% to 70.7%, and the average total nitrogen removal rate decreased from 81.3% to 43.6%, respectively. The results demonstrated that the low-concentration methanol as an organic carbon matter harmed the CANON process. Fortunately, the CANON system had an excellent self-healing ability when the methanol was stopped, with the average ammonium nitrogen removal rate and total nitrogen removal rate returning to 95.5% and 80.9%, respectively. This research supplies a reference for practical engineering design and application by improving the understanding of the effects of low-concentration methanol on CANON process performance.

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