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处理含 2-氟苯酚废水的旋转生物接触器中的细菌群落动态。

Bacterial community dynamics in a rotating biological contactor treating 2-fluorophenol-containing wastewater.

机构信息

Laboratório Associado, Escola Superior de Biotecnologia, CBQF, Centro de Biotecnologia e Química Fina, Universidade Católica Portuguesa/Porto, Rua Dr. António Bernardino Almeida, 4200-072, Porto, Portugal.

出版信息

J Ind Microbiol Biotechnol. 2014 Jan;41(1):97-104. doi: 10.1007/s10295-013-1381-4. Epub 2013 Nov 26.

Abstract

One of the main factors affecting the performance of rotating biological contactors (RBC) is the biofilm characteristics. Therefore, a deep understanding of the microbial population dynamics and structure of the biofilm is mandatory if optimization of organic matter and nutrients removal is targeted. This study focused on the effects of organic shock loads of 2-fluorophenol (2-FP) on the microbial diversity present in an RBC biofilm. The RBC was seeded with activated sludge from a conventional wastewater treatment plant and was operated during 496 days. During the first 126 days, the RBC was subjected to intermittent 2-FP shocks of 25 mg l(-1) and no degradation occurred. Therefore, the reactor was subsequently augmented with a 2-FP-degrading strain (FP1). Afterwards, the RBC had a stable performance when subjected to 2-FP shocks up to 50 mg l(-1) and to a starvation period, as indicated by removal of the compound. Denaturing gradient gel electrophoresis (DGGE) revealed large shifts in microbial communities present in the first and fifth stages, although no clear relation between the sample collection time and spatial factor was found. Phylogenetic affiliation of some predominant members was assessed by direct sequencing of correspondent DGGE bands. Affiliations to α-, β- and δ-Proteobacteria were found. Several bacterial strains isolated from the reactor showed capacity for 2-FP degradation. Strain FP1 was successfully recovered from the biofilm by plating and by DGGE, reinforcing that bioaugmentation was successfully achieved.

摘要

影响旋转生物接触器 (RBC) 性能的主要因素之一是生物膜特性。因此,如果要优化有机物和营养物质的去除,就必须深入了解生物膜中微生物种群动态和结构。本研究重点研究了 2-氟苯酚 (2-FP) 有机冲击负荷对 RBC 生物膜中存在的微生物多样性的影响。RBC 接种了来自传统污水处理厂的活性污泥,并运行了 496 天。在最初的 126 天中,RBC 受到 25 mg l(-1) 的间歇性 2-FP 冲击,但没有发生降解。因此,随后向反应器中添加了一种 2-FP 降解菌 (FP1)。之后,当 RBC 受到高达 50 mg l(-1) 的 2-FP 冲击和饥饿期时,表现出稳定的性能,如化合物的去除所示。变性梯度凝胶电泳 (DGGE) 显示出第一和第五阶段存在的微生物群落的大幅变化,尽管未发现样品采集时间和空间因素之间存在明显关系。通过直接对相应的 DGGE 条带进行测序评估了一些主要成员的系统发育归属。发现与 α-、β-和 δ-变形菌门有关。从反应器中分离出的几种细菌菌株显示出 2-FP 降解能力。通过平板划线和 DGGE 成功从生物膜中回收 FP1 菌株,这证实了生物增强成功实现。

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