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用于改善处理后的城市废水的湿地微宇宙中的微生物种群和活性。

Microbial population and activity in wetland microcosms constructed for improving treated municipal wastewater.

机构信息

Institute for Soil Water and Environmental Sciences, Agricultural Research Organization, The Volcani Center, Bet Dagan, 50250, Israel.

出版信息

Microb Ecol. 2010 May;59(4):700-9. doi: 10.1007/s00248-009-9611-z. Epub 2009 Nov 28.

Abstract

The idea of using constructed wetlands for the treatment and improving of wastewater emerged in the second half of the last century. Despite relatively wide use of this environmentally friendly technology, relatively little is known about the microbial populations involved in biotransformation and removal of contaminants in this system. The aim of the current study was to investigate the assembly and function of microbial populations in vertical-flow constructed wetland microcosms designed to improve the quality of wastewater after activated sludge treatment. Also, the performance of 3-year-old wetland ponds was investigated. Even though the quality of the influent water was relatively high, improvement in water parameters such as coliform level, ammonia concentration, BOD, and TSS was observed. The performance of the wetland ponds was comparable to that of the microcosms. The microbial community composition of the biofilm formed on the surface of gravel particles in vegetated and plant-free microcosms was studied by denaturing gradient gel electrophoresis (DGGE) and sequencing of 16S rRNA gene fragments. Highly complex bacterial diversity was observed in the biofilm. Cluster analysis of DGGE patterns demonstrated that depth within the wetland microcosm has a stronger effect on microbial community composition of the biofilm formed on wetland matrix than vegetation. Measurements of fluorescein diacetate hydrolysis activity and nitrification potential revealed that hydrolytic activity was affected by both microcosm depth and vegetation presence, whereas nitrification potential was mostly influenced by depth. Resolving the bacterial assemblage of wetland biofilm, which often is considered a black box, will help to understand the interactions involved in the development of diverse and mature biofilm and its function.

摘要

利用人工湿地处理和改善废水的想法出现在上世纪后半叶。尽管这种环保技术得到了相对广泛的应用,但对于参与该系统中污染物生物转化和去除的微生物种群,人们的了解相对较少。本研究的目的是调查垂直流人工湿地微宇宙中微生物种群的组装和功能,该湿地微宇宙旨在改善经过活性污泥处理后的废水的质量。此外,还研究了 3 年历史的湿地池塘的性能。尽管进水水质相对较高,但观察到诸如大肠菌群水平、氨浓度、BOD 和 TSS 等水参数的改善。湿地池塘的性能可与微宇宙相媲美。通过变性梯度凝胶电泳 (DGGE) 和 16S rRNA 基因片段测序研究了植被和无植物微宇宙中砾石颗粒表面生物膜形成的微生物群落组成。在生物膜中观察到高度复杂的细菌多样性。DGGE 图谱的聚类分析表明,湿地微宇宙内的深度对形成于湿地基质上的生物膜的微生物群落组成的影响比植被更强。荧光素二乙酸水解活性和硝化潜能的测量表明,水解活性受到微宇宙深度和植被存在的双重影响,而硝化潜能主要受深度影响。解析湿地生物膜的细菌组合,通常被认为是一个黑箱,将有助于理解在多样化和成熟生物膜的发展及其功能中涉及的相互作用。

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