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污泥形态对厌氧氨氧化过程的影响:从性能、结构和微生物群落角度的分析。

Effects of sludge morphology on the anammox process: Analysis from the perspectives of performance, structure, and microbial community.

机构信息

Key Laboratory of Beijing for Water Quality Science and Water Environmental Recovery Engineering, College of Architectural Engineering, Beijing University of Technology, Beijing, 100124, China.

Key Laboratory of Beijing for Water Quality Science and Water Environmental Recovery Engineering, College of Architectural Engineering, Beijing University of Technology, Beijing, 100124, China.

出版信息

Chemosphere. 2022 Feb;288(Pt 1):132390. doi: 10.1016/j.chemosphere.2021.132390. Epub 2021 Sep 29.

Abstract

The nitrogen removal characteristics, physicochemical properties, and microbial community composition of four different anaerobic ammonium oxidation (anammox) sludge morphologies were investigated. The morphologies considered in this study, namely suspended sludge (Rs), biofilm (Rm), granular sludge (Rg), and encapsulated biomass (Re), were prepared from floc sludge. The results show that Re exhibited the maximum anammox activity, followed by Rg, Rm, and Rs. Additionally, the anammox contribution rate was higher in Rg and Re. The higher extracellular polymer content in Rg promoted sludge accumulation, and tryptophan was observed in Rm and Rg, which was replaced by humic acids in Rs. Re showed the largest specific surface area, hydrophobicity and strength, and its good structure ensured enrichment of anammox bacteria (AnAOB). In terms of the microbial community, the functional bacterium Candidatus Kuenenia accounted for the highest proportion in Rm (39.27%), but the presence of both anaerobic and aerobic regions led to increased community complexity with more nitrifying bacteria. In contrast, Rg and Re had a more specific microbial community. In addition, denitrifying bacteria tended to grow in Rs, while nitrifying bacteria were retained in Rm. The AnAOB were more likely to be enriched in sludge aggregates (both Rm and Rg) and carriers (Re). Through correlation analysis, the potential relationship involving bacterial flora evolution of each sample was clarified. Finally, the structural models of different morphologies of sludge were proposed. This study deepens the understanding of various anammox sludge morphologies as well as provides useful information for the cultivation of AnAOB and further application of anammox.

摘要

研究了四种不同厌氧氨氧化(Anammox)污泥形态的脱氮特性、理化性质和微生物群落组成。本研究考虑的形态分别为悬浮污泥(Rs)、生物膜(Rm)、颗粒污泥(Rg)和包埋生物质(Re),它们均由絮状污泥制备而成。结果表明,Re 表现出最大的 Anammox 活性,其次是 Rg、Rm 和 Rs。此外,Rg 和 Re 中的 Anammox 贡献率更高。Rg 中较高的胞外聚合物含量促进了污泥的积累,在 Rm 和 Rg 中观察到色氨酸,而在 Rs 中则被腐殖酸取代。Re 表现出最大的比表面积、疏水性和强度,其良好的结构确保了 Anammox 细菌(AnAOB)的富集。在微生物群落方面,功能菌 Candidatus Kuenenia 在 Rm 中占比最高(39.27%),但由于存在厌氧和有氧区域,导致群落复杂性增加,硝化细菌增多。相比之下,Rg 和 Re 具有更具特异性的微生物群落。此外,反硝化细菌在 Rs 中倾向于生长,而硝化细菌则在 Rm 中保留。AnAOB 更有可能在污泥聚集体(Rm 和 Rg)和载体(Re)中富集。通过相关分析,阐明了每个样品中细菌菌群进化的潜在关系。最后,提出了不同形态污泥的结构模型。本研究深化了对各种 Anammox 污泥形态的认识,并为 AnAOB 的培养和进一步应用 Anammox 提供了有用信息。

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