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成功将光照应用于同步硝化/反硝化除磷系统:促进部分硝化和糖原积累代谢。

The successful application of light to the system of simultaneous nitrification/endogenous denitrification and phosphorus removal: Promotion of partial nitrification and glycogen accumulation metabolism.

机构信息

National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Beijing University of Technology, Beijing 100124, China.

National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Beijing University of Technology, Beijing 100124, China.

出版信息

Water Res. 2023 Nov 1;246:120742. doi: 10.1016/j.watres.2023.120742. Epub 2023 Oct 13.

Abstract

Partial nitrification (PN) and high glycogen accumulating metabolism (GAM) activity are the basis for efficient nitrogen (N) and phosphorus (P) removal in simultaneous nitrification endogenous denitrification and phosphorus removal (SNDPR) systems. However, achieving these processes in practical operations is challenging. This study proposes that light irradiation is a novel strategy to enhance the nutrient removal performance of the SNDPR system with low carbon to nitrogen ratios (C/N of 3.3-4.1) domestic wastewater. Light energy densities (Es) of 55-135 J/g VSS were found to promote the activity of ammonia-oxidizing bacteria (AOB) and GAM, while inhibiting the activity of nitrite-oxidizing bacteria (NOB) and polyphosphate accumulating metabolism (PAM). Long-term exposure to different light patterns at Es of 55-135 J/g VSS revealed that continuous light rapidly achieved PN by inhibiting NOB activity and promoted the growth of glycogen accumulating organisms (GAOs), allowing the removal of above 82 % N and below 80 % P. Intermittent light maintained stable PN by inhibiting the activity and growth of NOB and promoted the growth of polyphosphate accumulating organisms (PAOs) with high GAM activity (Accmulibacer IIC-ii and IIC-iii), allowing the removal of above 82 % N and 95 % P. Flow cytometry and enzyme activity assays showed that light promoted GAM-related enzyme activity and the metabolic activity of partial Accmulibacer II over other endogenous denitrifying bacteria, while inhibiting NOB translation activity. These findings provide a new approach for enhancing nutrient removal, especially for achieving PN and promoting GAM activity, in SNDPR systems treating low C/N ratio domestic wastewater using light irradiation.

摘要

短程硝化(PN)和高糖原积累代谢(GAM)活性是同步硝化反硝化除磷(SNDPR)系统中高效氮(N)和磷(P)去除的基础。然而,在实际操作中实现这些过程具有挑战性。本研究提出,光照是一种增强低碳氮比(C/N 为 3.3-4.1)生活污水 SNDPR 系统养分去除性能的新策略。发现光能密度(Es)为 55-135 J/g VSS 可促进氨氧化菌(AOB)和 GAM 的活性,同时抑制亚硝酸盐氧化菌(NOB)和聚磷代谢(PAM)的活性。在 Es 为 55-135 J/g VSS 的不同光照模式下进行长期暴露实验,结果表明,连续光照通过抑制 NOB 活性迅速实现 PN,并促进糖原积累菌(GAOs)的生长,从而实现超过 82%的 N 和低于 80%的 P 去除。间歇光照通过抑制 NOB 的活性和生长,同时促进具有高 GAM 活性(Accmulibacter IIC-ii 和 IIC-iii)的聚磷积累菌(PAOs)的生长,从而维持稳定的 PN,实现超过 82%的 N 和 95%的 P 去除。流式细胞术和酶活性测定表明,光照促进了 GAM 相关酶活性和部分 Accmulibacter II 的代谢活性,超过了其他内源反硝化菌,同时抑制了 NOB 的翻译活性。这些发现为使用光照增强 SNDPR 系统处理低 C/N 比生活污水的养分去除提供了一种新方法,特别是实现 PN 和促进 GAM 活性。

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