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短程反硝化-厌氧氨氧化工艺的影响因素及研究进展

怀磊 王众 张守彬 刘勇丽 崔慧慧 刘希平 夏训峰

净水技术2026,Vol.45Issue(5):17-24,39,9.
净水技术2026,Vol.45Issue(5):17-24,39,9.DOI:10.15890/j.cnki.jsjs.2026.05.003

短程反硝化-厌氧氨氧化工艺的影响因素及研究进展

Research Progress and Influencing Factors of Partial Denitrification-Anammox Processes

怀磊 1王众 2张守彬 1刘勇丽 2崔慧慧 3刘希平 2夏训峰2

作者信息

  • 1. 济南大学土木建筑学院,山东济南 250022
  • 2. 生态环境部土壤与农业农村生态环境监管技术中心,北京 100012
  • 3. 生态环境部对外合作与交流中心,北京 100035
  • 折叠

摘要

Abstract

[Objective]This paper aims to systematically sort out the reaction mechanisms,influencing factors,process forms,and current application status of the partial denitrification-Anammox(PDA)process,clarifying its technical advantages and existing challenges,with the hope of providing theoretical basis and direction guidance for further research and promotion of this process.[Methods]By combining literature reviews and case analysis,this paper deeply analyzes the microbial synergistic mechanisms of the PDA process,focusing on the impact of key factors such as temperature,pH,and carbon-to-nitrogen ratio(C/N)on process efficiency,and compares the operational characteristics and applicable conditions of two-stage and integrated PDA processes.[Results]PDA process operates most effectively under the conditions of a temperature range of 30 ℃ to 35 ℃,pH value of 7.0-8.5,and a C/N ratio of 2.0-3.0;the two-stage process is flexible and suitable for various water qualities,while the integrated process has a smaller footprint and lower costs but poses greater difficulty in regulation.Engineering practices indicate that the PDA process can achieve efficient nitrogen removal[total nitrogen(TN)removal rate>90%],significantly saving energy and reducing consumption.[Conclusion]Through a comprehensive review of the PDA process,it is evident that PDA is an efficient and energy-saving new biological nitrogen removal technology with broad application prospects,but its promotion and application in practical engineering still need to address key issues such as low-temperature adaptability,microbial competition regulation,and system stability.Future efforts should strengthen the development of low-temperature strains,precise control of carbon sources,and engineering validation research.

关键词

厌氧氨氧化/短程反硝化/影响因素/工艺形式/微生物

Key words

Anammox/partial denitrification/influencing factor/process form/microorganism

分类

资源环境

引用本文复制引用

怀磊,王众,张守彬,刘勇丽,崔慧慧,刘希平,夏训峰..短程反硝化-厌氧氨氧化工艺的影响因素及研究进展[J].净水技术,2026,45(5):17-24,39,9.

基金项目

山东省自然科学基金(ZR2023ME143) (ZR2023ME143)

净水技术

1009-0177

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