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一种改进的用于分散式污水处理的厌氧-缺氧-好氧系统的脱氮效率及机制

Nitrogen removal efficiency and mechanisms of an improved anaerobic-anoxic-oxic system for decentralized sewage treatment.

作者信息

Xie Yadong, Zhang Qionghua, Wu Qi, Zhang Jiyu, Dzakpasu Mawuli, Wang Xiaochang C

机构信息

Key Lab of Northwest Water Resource, Environment, and Ecology, Ministry of Education, Xi'an University of Architecture and Technology, Xi'an 710055, China.

Key Lab of Northwest Water Resource, Environment, and Ecology, Ministry of Education, Xi'an University of Architecture and Technology, Xi'an 710055, China; International Science & Technology Cooperation Center for Urban Alternative Water Resources Development, Xi'an 710055, China.

出版信息

Bioresour Technol. 2024 Feb;393:129976. doi: 10.1016/j.biortech.2023.129976. Epub 2023 Nov 14.

Abstract

The unstable operation and poor effluent quality often associated with decentralized sewage treatment systems due to fluctuating water flows have garnered significant attention. In this study, a novel integrated process combining anoxic denitrification and simultaneous nitrification and denitrification was developed to address these challenges. The improved anaerobic-anoxic-aerobic system achieved average effluent concentrations of 20.83 mg/L and 4.63 mg/L for chemical oxygen demand and NH-N, with average removal rates of 91 % and 68 %, respectively. Moreover, the aerobic zone demonstrated an impressive efficiency of 40.8 % for simultaneous nitrification and denitrification. The key bacteria groups driving the system's performance were heterotrophic and aerobic nitrifying bacteria, which dominated the microbial populations. Overall, the system optimizes the traditional anaerobic-anoxic-aerobic process, providing an effective solution for fluctuating wastewater flows. It establishes a successful coexistence model for multiple microbial populations, highlighting its applicability for superior nitrogen removal performance, and reference for optimizing rural sewage treatment. TAKE HOME MESSAGE SENTENCE: The improved anaerobic-anoxic-aerobic system for fluctuating wastewater treatment has superior nitrogen removal performance depending on multiple microbial populations.

摘要

由于水流波动,分散式污水处理系统常常存在运行不稳定和出水水质差的问题,这已引起了广泛关注。在本研究中,开发了一种结合缺氧反硝化与同步硝化反硝化的新型集成工艺来应对这些挑战。改进后的厌氧-缺氧-好氧系统对化学需氧量和氨氮的平均出水浓度分别为20.83mg/L和4.63mg/L,平均去除率分别为91%和68%。此外,好氧区同步硝化反硝化效率高达40.8%。驱动该系统性能的关键菌群是异养和好氧硝化细菌,它们在微生物群落中占主导地位。总体而言,该系统优化了传统的厌氧-缺氧-好氧工艺,为波动的废水流量提供了有效的解决方案。它建立了多种微生物群落成功共存的模型,突出了其在卓越脱氮性能方面的适用性,并为优化农村污水处理提供了参考。要点句子:改进后的用于处理波动废水的厌氧-缺氧-好氧系统,依赖多种微生物群落具有卓越的脱氮性能。

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