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纳米气泡在生物脱氮过程中动态调节厌氧氨氧化颗粒污泥结构和稳定性中的潜在作用。

Potential role of nanobubbles in dynamically modulating the structure and stability of anammox granular sludge within biological nitrogen removal process.

机构信息

Key Laboratory of the Three Gorges Reservoir Region's Eco-Environments of MOE, Chongqing University, Chongqing 400045, China.

Key Laboratory of the Three Gorges Reservoir Region's Eco-Environments of MOE, Chongqing University, Chongqing 400045, China.

出版信息

Sci Total Environ. 2021 Aug 25;784:147110. doi: 10.1016/j.scitotenv.2021.147110. Epub 2021 Apr 16.

Abstract

The generation of visible macrobubbles considerably affects the structure and function of anammox granules in the anammox granular sludge (AnGS) system. However, the existence of nanobubbles (NBs) and their role in maintaining the AnGS structure and stability are unclear because of the complexity of the system and lack of effective analytical methods. In this study, methods for NB analysis and assessment of their effects were developed to investigate the formation and characteristics of NBs in an AnGS system and the effects of NBs on the properties and function of AnGS. The results indicated that dissolved gas supersaturation caused by AnGS generated NBs of 2.75 × 10 bubbles/mL inside an AnGS reactor after running for 300 min at 30 °C. The increasing absolute value of the zeta potential of NBs with time indicated that the NBs in the AnGS system were gradually stable. The size of the stable NBs ranged from 150 nm to 400 nm. NB formation also increased the space and pressure between cells, leading to the breakage of the cell cluster and causing structural changes in granules. Changes in the local granular microstructure caused by NBs were favorable for the porous structure of granules to avoid granular disintegration and flotation caused by the excessive secretion of extracellular polymeric substances blocking gas channels. The formation and stability of NBs penetrating the cell clusters played a crucial role in the formation and stability of nanopores around or inside the cell clusters, further providing a basis for the formation of high-porosity structures and efficient mass transfer of AnGS.

摘要

可见大气泡的生成会极大地影响厌氧氨氧化颗粒污泥(AnGS)系统中厌氧氨氧化颗粒的结构和功能。然而,由于系统的复杂性和缺乏有效的分析方法,纳米气泡(NBs)的存在及其在维持 AnGS 结构和稳定性方面的作用尚不清楚。在这项研究中,开发了用于 NBs 分析和评估其对 AnGS 结构和稳定性影响的方法,以研究 NBs 在 AnGS 系统中的形成和特性,以及 NBs 对 AnGS 性质和功能的影响。结果表明,在 30°C 下运行 300min 后,AnGS 产生的溶解气体过饱和会在 AnGS 反应器内生成 2.75×10^9 个气泡/mL 的 NBs。随着时间的推移,NBs 的 zeta 电位绝对值增加,表明 AnGS 系统中的 NBs 逐渐稳定。稳定的 NBs 的尺寸范围为 150nm 至 400nm。NB 的形成还增加了细胞之间的空间和压力,导致细胞簇破裂,并导致颗粒结构发生变化。NB 引起的局部颗粒微结构变化有利于颗粒的多孔结构,以避免由于胞外聚合物物质的过度分泌阻塞气体通道而导致的颗粒解体和浮选。穿透细胞簇的 NBs 的形成和稳定性在细胞簇周围或内部的纳米孔的形成和稳定性中起着关键作用,进一步为高多孔结构的形成和 AnGS 的高效传质提供了基础。

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