盐度对固定床生物膜反应器中的反硝化、膜堵塞和细菌群落的影响

Ning An, Lei Ma, Dameng Lian, Shuwei Wang
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引用次数: 0

摘要

本研究利用固定床生物膜膜生物反应器评估了 10 个盐度水平的脱氮和除碳性能、膜堵塞、微生物群落的组成和动态。随着盐度水平的增加(从 0 到 30 克/升),总氮和化学需氧量的去除率分别从第一阶段的 98% 和 86% 降至第十阶段的 25% 和 45%。当盐度超过 10 克/升时,膜堵塞的速度明显加快。对污垢阻力分布的分析表明,可溶性微生物产物(SMPs)是造成这一现象的主要原因。微生物群落演替的不规则性反映了不同细菌对不同盐度的不同适应性。随着实验的进行,Sulfuritalea、Lentimircobium、Thauera 和 Pseudomonas 的相对丰度从 20.2% 增加到 47.7%。胞外聚合物物质相关分析表明,Azospirillum 在保持生物膜载体结构完整性方面发挥了积极作用。SMP 相关分析表明,Lentimircobium、Thauera、假单胞菌与 SMP 含量呈正相关。这些结果表明,在盐胁迫条件下,这三种细菌属能显著促进 SMP 的释放,进而导致严重的膜堵塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of salinity on denitrification, membrane fouling and bacterial community in a fixed-bed biofilm membrane reactor
In this study, a fixed-bed biofilm membrane bioreactor was used to assess denitrification and carbon removal performance, membrane fouling, composition, and the dynamics of microbial communities across 10 salinity levels. As salinity levels increased (from 0 to 30 g/L), the removal efficiency of total nitrogen and chemical oxygen demand decreased from 98 and 86% in Phase I to 25 and 45% in Phase X, respectively. Beyond a salinity level of 10 g/L, membrane fouling accelerated considerably. The analysis of fouling resistance distribution suggested that soluble microbial products (SMPs) were the primary cause of this phenomenon. The irregularity in microbial community succession reflected the varying adaptability of different bacteria to different salinity levels. The relative abundance of Sulfuritalea, Lentimircobium, Thauera, and Pseudomonas increased from 20.2 to 47.7% as the experiments progressed. Extracellular polymeric substances-related analysis suggested that Azospirillum plays a positive role in preserving the structural integrity of the biofilm carrier. The SMP-related analysis showed a positive correlation between Lentimircobium, Thauera, Pseudomonas, and the SMP content. These results suggested that these three bacterial genera significantly promoted the release of SMP under salt stress, which in turn led to severe membrane fouling.
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