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活性污泥系统对胁迫条件的分层严格响应行为。

Hierarchical stringent response behaviors of activated sludge system to stressed conditions.

机构信息

Key Laboratory of Northwest Water Resource, Environment, and Ecology, MOE, School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

Key Laboratory of Northwest Water Resource, Environment, and Ecology, MOE, School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China; Xi'an Key Laboratory of Intelligent Equipment Technology in Environmental Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Sci Total Environ. 2023 Apr 20;870:161832. doi: 10.1016/j.scitotenv.2023.161832. Epub 2023 Jan 28.

Abstract

The stringent response of activated sludge systems to either stressed or harmful environments is important for the stable operation of activated sludge, which is examined by taking copper ion (Cu) as a stress model in this study. When weak stress was employed (Cu ≤ 2.5 mg/L), the N-acyl-homoserine lactones (AHLs) of C6-, C8-, and C10-HSL increased by 30 %, 13 %, and 127 %, respectively, while the redox sensor green (RSG) intensity decreased by 28 %. Encountering the increased stress (2.5 mg/L < Cu ≤ 5 mg/L), bacteria concentration in the supernatant increased by 87 %. However, the respiration rates of autotrophic and heterotrophic bacteria (SOUR and SOUR) and adenosine triphosphate decreased by 52 %, 18 %, and 27 %, respectively, and the flocs disintegrated with a diameter decreasing from 57 to 51 μm. When the stress became more serious (Cu > 5 mg/L), the respiration rates continued to decline, but the quasi-endogenous respiration ratio (R) increased from 31 % to 47 %. Negligible changes occurred in the endogenous respiration rate (SOUR), adenosine diphosphate, and adenosine monophosphate. Based on these results, a hierarchical stringent response model of the activated sludge system to stressed conditions was proposed, and these responses were evaluated by respirogram. The initial response to weak stress was related to the most sensitive signals of quorum sensing and RSG intensity, well described by the quasi-endogenous respiration rate. The adaptive response to increased stress was the proactive migrations of low- and high-nucleic-acid bacteria to the supernatant, causing the looseness and even disintegration of sludge flocs, well described by SOUR, SOUR, and R. The lethal response to lethal stress was related to endogenous metabolic processes, well described by SOUR. This work provides new insights into understanding the stringent response of activated sludge systems to some stressed conditions. It helps to regulate the stability of activated sludge systems with respirogram technology.

摘要

活性污泥系统对胁迫或有害环境的严格响应对于活性污泥的稳定运行非常重要,本研究以铜离子 (Cu) 作为胁迫模型对此进行了考察。当采用弱胁迫时 (Cu ≤ 2.5mg/L),C6-、C8- 和 C10-HSL 的 N-酰基高丝氨酸内酯 (AHLs) 分别增加了 30%、13%和 127%,而氧化还原传感器绿 (RSG) 强度降低了 28%。当遇到增加的胁迫 (2.5mg/L < Cu ≤ 5mg/L) 时,上清液中的细菌浓度增加了 87%。然而,自养和异养细菌的呼吸速率 (SOUR 和 SOUR) 和三磷酸腺苷 (ATP) 分别降低了 52%、18%和 27%,絮体直径从 57μm 减小到 51μm。当胁迫变得更加严重 (Cu > 5mg/L) 时,呼吸速率继续下降,但准内源呼吸比 (R) 从 31%增加到 47%。内源呼吸速率 (SOUR)、二磷酸腺苷和一磷酸腺苷几乎没有变化。基于这些结果,提出了活性污泥系统对胁迫条件的分层严格响应模型,并通过呼吸图对这些响应进行了评估。对弱胁迫的初始响应与群体感应的最敏感信号和 RSG 强度有关,准内源呼吸率很好地描述了这一点。对增加的胁迫的适应性响应是低核酸和高核酸细菌主动迁移到上清液中,导致污泥絮体的松散甚至解体,SOUR、SOUR 和 R 很好地描述了这一点。对致死胁迫的致死响应与内源性代谢过程有关,SOUR 很好地描述了这一点。这项工作为理解活性污泥系统对一些胁迫条件的严格响应提供了新的见解。它有助于利用呼吸图技术调节活性污泥系统的稳定性。

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