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改良型生物脱氮除磷工艺处理低碳氮比废水的效能及机制。

Performance and mechanism of modified biological nutrient removal process in treating low carbon-to-nitrogen ratio wastewater.

机构信息

School of Environment, Harbin Institute of Technology, Harbin 150090, China.

School of Environment, Harbin Institute of Technology, Harbin 150090, China; State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Bioresour Technol. 2023 Jan;367:128254. doi: 10.1016/j.biortech.2022.128254. Epub 2022 Nov 9.

Abstract

For solving the challenge of difficult nutrient removal, high running cost and CO emission at low carbon-to-nitrogen (C:N) ratio, Bi-Bio-Selector for nitrogen and phosphorus removal (BBSNP) process was developed. Under parallel operation conditions, full-scale BBSNP was less influence by low C:N ratio (3.5-2) than Anaerobic-anoxic-aerobic (AAO) and achieved better nitrogen removal performance. The mechanism of performance advantage in BBSNP was analyzed by mass balance and high throughout sequencing. It demonstrated BBSNP developed unique microbial community at C:N ratio of 2. Higher abundance of Saccharibacteria, Ferruginibacter, Ottowia, Dokdonella, Candidatus_Nitrotoga and Nitrospira in BBSNP was responsible for better chemical oxygen demand (COD) utilization efficiency, denitrification, denitrifying phosphorus removal and nitrification. Meanwhile, under low C:N ratio, BBSNP could save 10% organic carbon and 15% oxygen requirement, reduce 53% running cost and 21% CO emission, which had practical value in relieving energy crisis and carbon emission of wastewater treatment plants (WWTPs).

摘要

为了解决低碳氮比(C:N)条件下难去除营养物、运行成本高和 CO 排放等问题,开发了生物-生物选择器除氮除磷(BBSNP)工艺。在平行运行条件下,BBSNP 受低 C:N 比(3.5-2)的影响小于厌氧-缺氧-好氧(AAO)工艺,且具有更好的脱氮性能。通过质量平衡和高通量测序分析了 BBSNP 性能优势的机制。结果表明,BBSNP 在 C:N 比为 2 时形成了独特的微生物群落。BBSNP 中 Saccharibacteria、Ferruginibacter、Ottowia、Dokdonella、Candidatus_Nitrotoga 和 Nitrospira 的丰度更高,这有助于提高 COD 利用效率、反硝化、反硝化除磷和硝化。同时,在低 C:N 比条件下,BBSNP 可节省 10%的有机碳和 15%的需氧量,降低 53%的运行成本和 21%的 CO 排放,这在缓解污水处理厂(WWTP)的能源危机和碳排放方面具有实际价值。

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