Inhibition of denitrification and enhancement of microbial interactions in the AGS system by high concentrations of quinoline.

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Haihe Xiao, Kening Wang, Yulin Wang, Tingting Zhang, Xiaohui Wang
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引用次数: 0

Abstract

Quinoline represents a highly toxic and structurally stable nitrogen-containing heterocyclic compound in coking wastewater, posing a potential threat to human beings and the ecological environment. In this study, we investigated the impact of gradually elevating quinoline concentration on pollutant removal efficiency, sludge characteristics, microbial community and their interactions in the aerobic granular sludge (AGS) system. The results demonstrated that AGS was capable of effectively degrading quinoline, with a final removal rate of 90 mg/L quinoline reaching 98.54 ± 0.28%. Notably, the denitrification process was significantly impeded in the presence of 90 mg/L quinoline, with the Phase D effluent displaying a notably high NO3--N concentration of 37.09 ± 21.81 mg/L, primarily attributed to the reduced abundance of norank_f_A4b bacteria. As the quinoline concentration increased, the sludge particle size diminished from 3.46 to 2.60 mm, while the settling performance deteriorated significantly, escalating from 31.29 ± 1.63 mL/g to 62.32 ± 2.87 mL/g. Meanwhile, the protein (PN) content in EPS gradually increased (from 19.87 ± 0.88 mg/g MLVSS to 51.22 ± 3.21 mg/g MLVSS), while the polysaccharide (PS) content fluctuated. Quinoline profoundly modified microbial community composition and structure, with deterministic processes dominating community assembly. Network analysis indicated intensified and complex microbial interactions at 90 mg/L quinoline, characterized by significantly higher positive correlations. In addition, rare taxa (RT) dominated the network nodes, with 74 of 93 key species belonging to RT, highlighting their pivotal roles in sustaining system functions and strengthening microbial connections. This study provides new insights into the effects of quinoline on microbial community structure and interactions in AGS system.

高浓度喹啉抑制 AGS 系统中的反硝化作用并增强微生物之间的相互作用。
喹啉是焦化废水中一种毒性强、结构稳定的含氮杂环化合物,对人类和生态环境构成潜在威胁。本研究探讨了逐步提高喹啉浓度对好氧颗粒污泥(AGS)系统中污染物去除率、污泥特性、微生物群落及其相互作用的影响。结果表明,AGS 能够有效降解喹啉,90 mg/L 喹啉的最终去除率达到 98.54 ± 0.28%。值得注意的是,在 90 mg/L 喹啉存在的情况下,反硝化过程明显受阻,D 阶段出水的 NO3-N 浓度高达 37.09 ± 21.81 mg/L,这主要归因于 norank_f_A4b 细菌数量的减少。随着喹啉浓度的增加,污泥粒径从 3.46 毫米减小到 2.60 毫米,沉降性能显著下降,从 31.29 ± 1.63 毫升/克上升到 62.32 ± 2.87 毫升/克。同时,EPS 中的蛋白质(PN)含量逐渐增加(从 19.87 ± 0.88 mg/g MLVSS 增加到 51.22 ± 3.21 mg/g MLVSS),而多糖(PS)含量则有所波动。喹啉深刻地改变了微生物群落的组成和结构,决定性过程主导了群落的组装。网络分析表明,在喹啉浓度为 90 毫克/升时,微生物之间的相互作用加剧且复杂,正相关性显著提高。此外,稀有类群(RT)在网络节点中占主导地位,93 个关键物种中有 74 个属于 RT 类群,突显了它们在维持系统功能和加强微生物联系方面的关键作用。这项研究为了解喹啉对 AGS 系统中微生物群落结构和相互作用的影响提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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