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Quantitative and qualitative analysis of methanogenic communities in mesophilically and psychrophilically cultivated anaerobic granular biofilims

机译:嗜温和嗜温培养的厌氧颗粒生物膜中产甲烷菌群落的定量和定性分析

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摘要

Anaerobic granulation describes the self-immobilisation of methanogenic consortia into dense, particulate biofilms. This procedure underpins the operation of several categories of high-rate anaerobic wastewater treatment system. Full-scale anaerobic granular sludge plants have been generally operated in the mesophilic (20-45℃) or thermophilic (45-65℃) temperature range. On the other hand, recent studies highlighted the economic advantages of treating wastewaters at their discharge temperatures (mostly under 18℃), removing a costly heating process and increasing net biogas yield. However, as yet, relatively little information is available about the microbial behaviour and interactions in anaerobic granular sludge formed under psychrophilic conditions. To this end, and in order to provide a microbial insight into low-temperature anaerobic granulation, we monitored the changes in methanogenic community structure, associated with the changes in process performance. Three, laboratory-scale, expanded granular sludge bed (EGSB) bioreactors treating a synthetic glucose wastewater were tested at two temperatures of 37 ± 1 ℃ (R1) and 15 ± 1 ℃ (R2 and 3). Quantitative real-time PCR and specific methanogenic activity assays highlighted a community shift towards hydrogenotrophic metha-nogens, particularly the order Methanomicrobiales in the low-temperature bioreactors. Corresponding to this, denaturing gradient gel electrophoresis (DGGE) analysis identified the emergence and maintenance of a Methanocorpusculum-like organism. Our results indicate that hydrogenotrophic methanogens, particularly the Methanomicrobiales-related populations, are likely to play important roles in low-temperature anaerobic granular sludge systems. This suggests that the process efficiency could be improved by facilitating the growth and retention of this group.
机译:厌氧制粒描述了产甲烷菌团的自固定化成致密的颗粒状生物膜。该程序为几类高速率厌氧废水处理系统的运行奠定了基础。大型厌氧颗粒污泥厂通常在中温(20-45℃)或高温(45-65℃)温度范围内运行。另一方面,最近的研究强调了在排放温度(大多低于18℃)下处理废水,省去了昂贵的加热过程并提高了沼气净产量的经济优势。然而,到目前为止,关于在嗜冷条件下形成的厌氧颗粒污泥中微生物行为和相互作用的信息很少。为此,为了提供微生物对低温厌氧制粒的了解,我们监测了产甲烷菌群落结构的变化,以及过程性能的变化。在37±1℃(R1)和15±1℃(R2和3)的两个温度下测试了三个处理合成葡萄糖废水的实验室规模的膨胀颗粒污泥床(EGSB)生物反应器。实时定量PCR和特定的产甲烷活性测定法突显了群落向氢营养型甲基原转变的趋势,特别是低温生物反应器中的甲硝菌顺序。与此对应的是,变性梯度凝胶电泳(DGGE)分析鉴定出了一种类似甲烷体的生物的出现和维持。我们的结果表明,氢营养型产甲烷菌,尤其是与甲烷微生物有关的种群,可能在低温厌氧颗粒污泥系统中发挥重要作用。这表明可以通过促进该组的生长和保留来提高过程效率。

著录项

  • 来源
    《Water Research》 |2009年第14期|3365-3374|共10页
  • 作者单位

    Microbial Ecology Laboratory, Department of Microbiology and Environmental Change Institute, National University of Ireland, Galway (NUI, Galway), University Road, Galiuay, Ireland;

    Microbial Ecology Laboratory, Department of Microbiology and Environmental Change Institute, National University of Ireland, Galway (NUI, Galway), University Road, Galiuay, Ireland;

    Microbial Ecology Laboratory, Department of Microbiology and Environmental Change Institute, National University of Ireland, Galway (NUI, Galway), University Road, Galiuay, Ireland;

    Centre for Resource Management and Efficiency, School of Applied Science, Cranfield University, College Road, Cranfield, Bedfordshire, MK43 0AL, UK;

    Microbial Ecology Laboratory, Department of Microbiology and Environmental Change Institute, National University of Ireland, Galway (NUI, Galway), University Road, Galiuay, Ireland;

    Microbial Ecology Laboratory, Department of Microbiology and Environmental Change Institute, National University of Ireland, Galway (NUI, Galway), University Road, Galiuay, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DGGE; low-temperature; anaerobic digestion; granular biofilm; methanogenic community; quantitative real-time PCR;

    机译:DGGE;低温;厌氧消化;颗粒生物膜产甲烷菌群落;定量实时PCR;
  • 入库时间 2022-08-17 13:51:07

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