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Efficiency and mechanism of nitrogen removal from piggery wastewater in an improved microaerobic process

机译:改进微生物工艺中猪渣废水氮气去除的效率及机理

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摘要

Characterized by high ammonium (NH_4~+ - N) and low ratio of chemical oxygen demand (COD) to total nitrogen (COD/TN), discharge of piggery wastewater has been identified as a primary pollution source resulting in water eutrophication. An improved microaerobic reactor, internal aerating microaerobic reactor (IAMR), was constructed to treat manure-free piggery wastewater without effluent recycle at dissolved oxygen of 0.3 mg/L and 32 °C. A removal rate of COD, NH_4~+ - N and TN averaged 77.9%, 94.6% and 82.6% was obtained in the reactor, with the concentration of 258.5, 235.5 and 335.2 mg/L in influent, respectively. 16S rDNA amplicon sequencing, carbon and nitrogen mass balance and stoichiometry indicated that heterotrophic nitrification-anammox was the dominant approach to nitrogen removal. Microbiome phenotypes showed that aerobic bacteria were the dominant microorganisms, and the microbiome oxidative stress tolerance was intensified along with the continuous operation of the IAMR, resulting in the survival of various facultative and anaerobic bacteria for nutrients removal. With the good nutrients removal, less energy consumption, and high tolerance to influent fluctuation, the improved IAMR was confirmed as a promising process for treating wastewater with high NH_4~+ - N and low COD/TN.
机译:由高铵表征(NH_4〜+ - N)和化学需氧量(COD)的低比率与总氮(COD / TN),养猪场废水排放已被确定为导致水的富营养化主污染源。一种改进的微需氧反应器中,内部充气微需氧反应器(IAMR),构建用于治疗自由粪肥-猪场废水而不以0.3 mg / L的溶解的氧和32℃下流出物循环。 COD,NH_4〜+的去除率 - N和TN平均77.9%,在反应器中分别得到94.6%和82.6%,与258.5,235.5和335.2毫克/升进水浓度。的16S rDNA测序扩增子,碳和氮的质量平衡和化学计量表示,异养硝化 - 厌氧氨氧化是主要的方法来除氮。微生物的表型显示,好氧菌为优势微生物和微生物氧化胁迫耐性是与IAMR的连续操作而加剧,导致各种兼及厌氧菌的脱氮除磷的生存。与良好的营养物质的去除,更小的能量消耗,以及进水波动高耐受性,改进的IAMR被确认为具有高NH_4〜+处理废水一个有前途的方法 - N和低COD / TN。

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  • 来源
    《Science of the total environment》 |2021年第20期|144925.1-144925.10|共10页
  • 作者单位

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology 73 Huanghe Road Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology 73 Huanghe Road Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology 73 Huanghe Road Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology 73 Huanghe Road Harbin 150090 PR China;

    State Key Laboratory of Urban Water Resource and Environment Harbin Institute of Technology 73 Huanghe Road Harbin 150090 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Piggery wastewater; Microaerobic process; Nitrogen removal; Microbiome phenotypes; Heterotrophic nitrification; Anammox;

    机译:Piggery废水;微生物过程;氮气去除;微生物组表型;异养硝化;anammox.;

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