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温度对厌氧膜生物反应器中污垢形成的影响:SMP-和 EPS-膜相互作用。

The effect of temperature on fouling in anaerobic membrane bioreactor: SMP- and EPS-membrane interactions.

机构信息

Zuckerberg Institute for Water Research (ZIWR), The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Midreshet Ben-Gurion 84990, Israel.

The Dead Sea and Arava Science Center, Masada 86190, Israel; Ben-Gurion University of the Negev, Eilat campus, Israel.

出版信息

Water Res. 2024 Aug 15;260:121867. doi: 10.1016/j.watres.2024.121867. Epub 2024 Jun 6.

Abstract

Biofouling is the main challenge in the operation of anaerobic membrane bioreactors (AnMBRs). Biofouling strongly depends on temperature; therefore, we hypothesize that the interactions and viscoelastic properties of soluble microbial products (SMP) and extracellular polymeric substances (EPS) vary with temperature, consequently influencing membrane permeability. This study compares the performance of an AnMBR operated at a similar permeate flux at two temperatures. The transmembrane pressure (TMP) rose rapidly after 5 ± 2 days at 25 °C but only after 18 ± 2 days at 35 °C, although the reactor's biological performance was similar at both temperatures, in terms of the efficiency of dissolved organic carbon removal and biogas composition, which were obtained by changing the hydraulic retention time. Using confocal laser scanning microscopy (CLSM), a higher biofilm amount was detected at 25 °C than at 35 °C, while quartz crystal microbalance with dissipation (QCM-D) showed a more adhesive, but less viscous and elastic EPS layer. In situ optical coherence tomography (OCT) of an ultra-filtration membrane, fed with the mixed liquor suspended solids (MLSS) at the two temperatures, revealed that while a higher rate of TMP increase was obtained at 25 °C, the attachment of biomass from MLSS was markedly less. Increased EPS adhesion to the membrane can accelerate TMP increase during the operation of both the AnMBR and the OCT filtration cell. EPS's reduced viscoelasticity at 25 °C suggests reduced floc integrity and possible increased EPS penetration into the membrane pores. Analysis of the structures of the microbial communities constituting the AnMBR flocs and membrane biofilms reveals temperature's effects on microbial richness, diversity, and abundance, which likely influence the observed EPS properties and consequent AnMBR fouling.

摘要

生物污垢是厌氧膜生物反应器 (AnMBR) 运行的主要挑战。生物污垢强烈依赖于温度;因此,我们假设可溶微生物产物 (SMP) 和胞外聚合物 (EPS) 的相互作用和粘弹性特性随温度而变化,从而影响膜的渗透性。本研究比较了在两种温度下以相似的渗透通量运行的 AnMBR 的性能。在 25°C 下,跨膜压力 (TMP) 在 5±2 天后迅速上升,但在 35°C 下仅在 18±2 天后上升,尽管在两种温度下,反应器的生物性能相似,从溶解有机碳去除效率和沼气成分来看,这是通过改变水力停留时间获得的。使用共聚焦激光扫描显微镜 (CLSM),在 25°C 下检测到的生物膜量高于 35°C,而石英晶体微天平耗散 (QCM-D) 显示出更具粘性但粘性和弹性更低的 EPS 层。在两个温度下,用混合液悬浮固体 (MLSS) 进料对超滤膜进行原位光学相干断层扫描 (OCT),结果表明,虽然在 25°C 下获得了更高的 TMP 增加率,但从 MLSS 附着的生物质明显减少。EPS 对膜的附着增加会加速 AnMBR 和 OCT 过滤池运行过程中 TMP 的增加。在 25°C 下,EPS 的粘弹性降低表明絮体完整性降低,可能导致 EPS 穿透膜孔增加。分析构成 AnMBR 絮体和膜生物膜的微生物群落的结构揭示了温度对微生物丰富度、多样性和丰度的影响,这可能影响观察到的 EPS 特性和随后的 AnMBR 结垢。

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