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Identification and quantification of microbial populations in activated sludge and anaerobic digestion processes

机译:活性污泥和厌氧消化过程中微生物种群的鉴定和定量

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摘要

Eight different phenotypes were studied in an activated sludge process (AeR) and anaerobic digester (AnD) in a full-scale wastewater treatment plant by means of fluorescent in situ hybridization (FISH) and automated FISH quantification software. The phenotypes were ammonia-oxidizing bacteria, nitrite-oxidizing bacteria, denitrifying bacteria, phosphate-accumulating organisms (PAO), glycogen-accumulating organisms (GAO), sulphate-reducing bacteria (SRB), methanotrophic bacteria and methanogenic archaea. Some findings were unexpected: (a) Presence of PAO, GAO and denitrifiers in the AeR possibly due to unexpected environmental conditions caused by oxygen deficiencies or its ability to survive aerobically; (b) presence of SRB in the AeR due to high sulphate content of wastewater intake and possibly also due to digested sludge being recycled back into the primary clarifier; (c) presence of methanogenic archaea in the AeR, which can be explained by the recirculation of digested sludge and its ability to survive periods of high oxygen levels; (d) presence of denitrifying bacteria in the AnD which cannot be fully explained because the nitrate level in the AnD was not measured. However, other authors reported the existence of denitrifiers in environments where nitrate or oxygen was not present suggesting that denitrifiers can survive in nitrate-free anaerobic environments by carrying out low-level fermentation; (e) the results of this paper are relevant because of the focus on the identification of nearly all the significant bacterial and archaeal groups of microorganisms with a known phenotype involved in the biological wastewater treatment.
机译:通过荧光原位杂交(FISH)和自动FISH定量软件,在大规模污水处理厂的活性污泥法(AeR)和厌氧消化器(AnD)中研究了八种不同的表型。表型是氨氧化细菌,亚硝酸盐氧化细菌,反硝化细菌,磷酸盐累积生物(PAO),糖原累积生物(GAO),硫酸盐还原细菌(SRB),甲烷营养细菌和产甲烷古菌。一些发现是出乎意料的:(a)AeR中存在PAO,GAO和反硝化剂,这可能是由于缺氧或需氧生存能力引起的意外环境条件所致; (b)由于废水中硫酸盐含量高,并且可能是由于消化后的污泥被循环回一级澄清池,所以AeR中存在SRB; (c)AeR中存在产甲烷的古细菌,这可以通过消化污泥的再循环及其在高氧水平下的生存能力来解释; (d)AnD中存在反硝化细菌,由于未测量AnD中的硝酸盐水平,因此无法完全解释。然而,其他作者报告说,在不存在硝酸盐或氧气的环境中存在反硝化剂,这表明反硝化剂可以通过进行低水平发酵而在无硝酸盐的厌氧环境中存活。 (e)本文的结果之所以具有相关性,是因为其重点是鉴定与生物废水处理有关的具有已知表型的几乎所有重要的细菌和古细菌。

著录项

  • 来源
    《Environmental Technology》 |2015年第4期|45-53|共9页
  • 作者单位

    Instituto de Ingenieria del Agua y Medio Ambiente, Universidad Politecnica de Valencia, Valencia, Spain;

    Departamento de Ingenieria Quimica, Universitat de Valencia, Burjassot, Spain;

    Departamento de Ingenieria Quimica, Universitat de Valencia, Burjassot, Spain;

    Instituto de Ingenieria del Agua y Medio Ambiente, Universidad Politecnica de Valencia, Valencia, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microbial diversity; FISH; phenotype; activated sludge; anaerobic digester;

    机译:微生物多样性鱼;表型活性污泥厌氧消化器;

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