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首页> 外文期刊>Science of the total environment >Can nitrifiers from the sidestream deammonification process be a remedy for the N-overload of the mainstream reactor?
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Can nitrifiers from the sidestream deammonification process be a remedy for the N-overload of the mainstream reactor?

机译:来自Sidestream Deammonification Process的硝化剂是主流反应器的N-Overload的补救措施吗?

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摘要

The combination of sidestream deammonification and bioaugmentation of the mainstream reactor using ammonia oxidizers from partial nitritation (PN) was not achieved before. This novel solution not only enables the efficient sidestream nitrogen removal, but also improves mainstream resistance to stress situations such as biomass washout or nitrogen overload. This feature is important for wastewater treatment plants (WWTPs) equipped with reject water deammonification as its implementation leads to lower nitrifier mass in the mainstream reactor and therefore diminish ability to cope with rapid increase in the loading rate (i.e. due to sidestream process failure). The proposed approach presents the use of the excess sludge from a modified PN process to boost the mainstream nitrification in unfavourable conditions. In a long-term laboratory experiment, the operation of an existing WWTP at low temperature was simulated in two reactors using real wastewater fluxes. One of them was augmented with the excess sludge from a PN reactor that treats reject water containing 20% of the WWTP N-load. The treatment efficiency in both reactors was tested under different nitrogen loading rates, as well as in the case of the of biomass loss. The bioaugmentation intensity was set according to the actual nitrogen load balance of the modelled WWTP, resulting in a daily seed volume only equal to 0.28% of the reactors' influent. Two incidents were simulated, where the nitrogen load increased by about 24.5% and 34%. In both cases, the nitrification efficiency in the non-augmented reactor dropped by about 45%, while the augmented reactor maintained efficient ammonium removal. The bioaugmentation effect was also noticeable during biomass washout -only in the non-augmented reactor nitrification was insufficient for over 60 days. These results undoubtedly show the possibility of combining two different approaches for sidestream nitrogen removal into one technology demonstrating the advantages of both component solutions.
机译:之前未实现使用氨氧化剂的侧孢虫脱颌化和主流反应器的生物沉积的组合。这种新的解决方案不仅能够实现有效的侧流氮去除,而且还提高了对诸如生物质洗涤或氮过载等压力情况的主流抵抗力。该特征对于装备废水的废水处理厂(WWTPS)很重要,因为其实施导致主流反应器中的硝化硝化物质降低,因此减少了应对加载速率的快速增加的能力(即,由于侧流过程发生故障)。所提出的方法呈现使用过量污泥从改性的PN过程中促进在不利条件下的主流硝化。在长期实验室实验中,使用真正的废水通量在两个反应器中模拟现有WWTP的运行。其中一个与来自PN反应器的多余污泥增强,这些污泥处理含有20%的WWTP N负载的废水。在不同的氮负载率下测试两个反应器中的处理效率,以及在生物质损失的情况下。根据模拟的WWTP的实际氮负载平衡设定生物沉积强度,导致日常种子体积仅等于反应器流入的0.28%。模拟了两种事件,其中氮负荷增加约24.5%和34%。在这两种情况下,非增强反应器中的硝化效率下降约45%,而增强反应器保持高效的去除铵。生物沉积效果在生物质损伤期间也是明显的 - 在非增强反应器中,硝化效硝化超过60天。这些结果毫无疑问地表明,将两种不同方法与侧流氮去除的可能性相结合成一个技术,证明了两种部件解决方案的优点。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|148066.1-148066.11|共11页
  • 作者单位

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland;

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland;

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland Wroclaw Municipal Water and Sewage Company Na GmbH 14/16 50-421 Wroclaw Poland;

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland;

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland;

    Faculty of Environmental Engineering. Wroclaw University of Science and Technology Wybrzeze Wyspianskiego 27 50-370 Wroclaw Poland;

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

    Bioaugmentation; Nitrogen removal; Partial nitritation; Deammonification failure; WWTP overload;

    机译:生物沉默;氮气去除;部分亚硝化;Deammonification失败;WWTP过载;

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