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Performance and Microbial Community Analysis in an Anaerobic Hybrid Baffled Reactor Treating Dairy Wastewater

机译:厌氧杂交反应器治疗乳品废水的性能和微生物群落分析

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摘要

Anaerobic dairy waste treatment requires effective control to avoid long-chain fatty acid (LCFA) inhibitory effects on anaerobic microorganisms, especially methanogens. The hybrid anaerobic baffled reactor (HABR) can provide system stability, but more needs to be done to understand how the microbial communities underpinning the HABR compartments behave and respond. Thus, this study aimed to examine the HABR's microbial community correlating its performance when subjected to an increase in organic loading rate (OLR) during simulated dairy wastewater treatment. Besides the elevation in OLR, the system could maintain a high COD removal efficiency, nearly to 91%, and elevate the methane production to 53%. Almost all of the organic matter removal occurred mainly in C1 and C2 compartments. The genera Methanosaeta, an acetoclastic methanogen, and Methanobacterium, a hydrogenotrophic methanogen, were the HABR's dominant species. The most representative phylum found was Bacteroidetes (12-28%), Firmicutes (3-20%), Chloroflexi (4-26%), and Proteobacteria (4-14%). Species capable of syntrophic partnership with methanogens were also identified, belonging to the family of Syntrophomonadaceae and Syntrophaceae. Microorganisms able to perform the AD process as HA73, VadinCA02, T78, Longilinea, Clostridium, and Syntrophomonas were present in the HABR.
机译:厌氧乳制品废物处理需要有效的控制,以避免对厌氧微生物,尤其是甲烷的长链脂肪酸(LCFA)抑制作用。杂交厌氧挡板反应器(HABR)可以提供系统稳定性,但更多需要做出以了解如何在HAbR隔间表现和响应的微生物社区方式。因此,本研究旨在检查HABR的微生物群落,当模拟乳制品废水处理期间受到有机加载速率(OLR)的增加时关联其性能。除了OLR的升高之外,该系统还可以保持高COD去除效率,近于91%,并提高甲烷产量至53%。几乎所有的有机物质去除都是在C1和C2隔室中发生。 Genera Methanosaeta,乙酰碳酸甲蛋白原和甲基杆菌,一种氢脱甲酸钠,是HABR的主导物种。发现的最具代表性的植物(12-28%),骨折(4-26%)和植物(4-14%)。还鉴定了能够与甲烷的种类合作,属于Syntrophomonadaceae和Syntrophaceae的家族。在HABR中存在能够以HA73,Vadinca02,T78,Longilinea,Clostridium和Syntrophomons进行AD过程的微生物存在。

著录项

  • 来源
    《Water, air and soil pollution》 |2021年第10期|403.1-403.16|共16页
  • 作者单位

    Fed Univ Alfenas UNIFAL MG Sci & Technol Inst Microbiol Lab Rodovia Jose Aurelio Vilela 11999 BR 267 Km 533 BR-37715400 Pocos De Caldas MG Brazil;

    Fed Univ Alfenas UNIFAL MG Sci & Technol Inst Microbiol Lab Rodovia Jose Aurelio Vilela 11999 BR 267 Km 533 BR-37715400 Pocos De Caldas MG Brazil;

    Univ Sao Paulo Fac Anim Sci & Food Engn Food Engn Dept Environm Biotechnol Lab Rua Duque de Caxias 225 BR-13635900 Pirassununga SP Brazil;

    Fed Univ Alfenas UNIFAL MG Sci & Technol Inst Microbiol Lab Rodovia Jose Aurelio Vilela 11999 BR 267 Km 533 BR-37715400 Pocos De Caldas MG Brazil;

    Fed Univ Alfenas UNIFAL MG Sci & Technol Inst Microbiol Lab Rodovia Jose Aurelio Vilela 11999 BR 267 Km 533 BR-37715400 Pocos De Caldas MG Brazil;

    Univ Minho CEB Ctr Biol Engn Campus Gualtar R Univ P-4710057 Braga Portugal;

    Univ Sao Paulo Fac Anim Sci & Food Engn Food Engn Dept Environm Biotechnol Lab Rua Duque de Caxias 225 BR-13635900 Pirassununga SP Brazil;

  • 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

    HABR; Dairy wastewater; Anaerobic digestion; Microbial community;

    机译:HABR;乳制品废水;厌氧消化;微生物群落;

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