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全尺寸序批式反应器(SBR)进水负荷变化后微生物活性的波动:饥饿后生物量的恢复

Fluctuation of microbial activities after influent load variations in a full-scale SBR: recovery of the biomass after starvation.

作者信息

Cabezas Angela, Draper Patricia, Etchebehere Claudia

机构信息

Cátedra de Microbiología, Universidad de la República, Montevideo, Uruguay.

出版信息

Appl Microbiol Biotechnol. 2009 Oct;84(6):1191-202. doi: 10.1007/s00253-009-2138-x. Epub 2009 Jul 23.

Abstract

Due to variations in the production levels, a full-scale sequencing batch reactor (SBR) for post-treatment of tannery wastewater was exposed to low and high ammonia load periods. In order to study how these changes affected the N-removal capacity, the microbiology of the reactor was studied by a diverse set of techniques including molecular tools, activity tests, and microbial counts in samples taken along 3 years. The recover capacity of the biomass was also studied in a lab-scale reactor operated with intermittent aeration without feeding for 36 days. The results showed that changes in the feeding negatively affected the nitrifying community, but the nitrogen removal efficiencies could be restored after the concentration stress. Species substitution was observed within the nitrifying bacteria, Nitrosomonas europaea and Nitrobacter predominated initially, and after an ammonia overload period, Nitrosomonas nitrosa and Nitrospira became dominant. Some denitrifiers, with nirS related to Alicycliphilus, Azospirillum, and Marinobacter nirS, persisted during long-term reactor operation, but the community fluctuated both in composition and in abundance. This fluctuating community may better resist the continuous changes in the feeding regime. Our results showed that a nitrifying-denitrifying SBR could be operated with low loads or even without feeding during production shut down periods.

摘要

由于生产水平的变化,一座用于制革废水后处理的全尺寸序批式反应器(SBR)经历了低氨负荷期和高氨负荷期。为了研究这些变化如何影响氮去除能力,通过一系列不同的技术对反应器的微生物群落进行了研究,包括分子工具、活性测试以及对3年期间采集的样本进行微生物计数。还在一个实验室规模的反应器中研究了生物量的恢复能力,该反应器间歇曝气且不进料运行36天。结果表明,进料的变化对硝化群落产生了负面影响,但在浓度应激后氮去除效率可以恢复。在硝化细菌中观察到了物种替代,最初欧洲亚硝化单胞菌和硝化杆菌占主导,在氨过载期后,亚硝酸亚硝化单胞菌和硝化螺菌成为优势菌。一些与 Alicycliphilus、固氮螺菌和海杆菌nirS相关的nirS反硝化菌在反应器长期运行期间持续存在,但群落的组成和丰度都有所波动。这种波动的群落可能更能抵抗进料方式的持续变化。我们的结果表明,硝化-反硝化SBR在低负荷甚至在生产停工期间不进料的情况下也可以运行。

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