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Optimization of operation conditions for the startup of aerobic granular sludge reactors biologically removing carbon, nitrogen, and phosphorous

机译:优化启动条件以生物方式去除碳,氮和磷的好氧颗粒污泥反应器

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摘要

The transformation of conventional flocculent sludge to aerobic granular sludge (AGS) biologically removing carbon, nitrogen and phosphorus (COD, N, P) is still a main challenge in startup of AGS sequencing batch reactors (AGS-SBRs). On the one hand a rapid granulation is desired, on the other hand good biological nutrient removal capacities have to be maintained. So far, several operation parameters have been studied separately, which makes it difficult to compare their impacts. We investigated seven operation parameters in parallel by applying a Plackett-Burman experimental design approach with the aim to propose an optimized startup strategy. Five out of the seven tested parameters had a significant impact on the startup duration. The conditions identified to allow a rapid startup of AGS-SBRs with good nutrient removal performances were (ⅰ) alternation of high and low dissolved oxygen phases during aeration, (ⅱ) a settling strategy avoiding too high biomass washout during the first weeks of reactor operation, (ⅲ) adaptation of the contaminant load in the early stage of the startup in order to ensure that all soluble COD was consumed before the beginning of the aeration phase, (ⅳ) a temperature of 20 ℃, and (ⅴ) a neutral pH. Under such conditions, it took less than 30 days to produce granular sludge with high removal performances for COD, N, and P. A control run using this optimized startup strategy produced again AGS with good nutrient removal performances within four weeks and the system was stable during the additional operation period of more than 50 days.
机译:将常规絮凝污泥转化为需氧颗粒污泥(AGS),以生物方式去除碳,氮和磷(COD,N,P)仍然是启动AGS测序间歇反应器(AGS-SBR)的主要挑战。一方面需要快速制粒,另一方面必须保持良好的生物营养去除能力。到目前为止,已经分别研究了几个操作参数,这使得很难比较它们的影响。我们通过应用Plackett-Burman实验设计方法并行研究了七个操作参数,旨在提出一种优化的启动策略。七个测试参数中的五个对启动持续时间有重大影响。确定能够快速启动具有良好营养去除性能的AGS-SBR的条件是(ⅰ)曝气期间高和低溶解氧相的交替;(ⅱ)避免在反应堆运行的头几周内避免过高的生物质冲刷的沉降策略,(ⅲ)在启动初期适应污染物负荷,以确保在曝气阶段开始之前消耗掉所有可溶性COD,(ⅳ)温度为20℃,并且(ⅴ)pH为中性。在这种条件下,用不到30天的时间就可以生产出对COD,N和P具有高去除性能的颗粒污泥。使用这种优化的启动策略进行的控制运行又在四周内又生产出了具有良好营养去除性能的AGS,系统运行稳定在超过50天的额外运营期内。

著录项

  • 来源
    《Water Research》 |2014年第1期|58-70|共13页
  • 作者单位

    Ecole Polytechnique Federate de Lausanne (EPFL), School of Architecture, Civil and Environmental Engineering, Laboratory for Environmental Biotechnology, Lausanne, Switzerland;

    Ecole Polytechnique Federate de Lausanne (EPFL), School of Architecture, Civil and Environmental Engineering, Laboratory for Environmental Biotechnology, Lausanne, Switzerland,EPFL ENAC IIE LBE, Station 6, 1015 Lausanne, Switzerland;

  • 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

    Aerobic granular biofilms; Granulation; Nutrient removal; Operation conditions; Reactor startup;

    机译:好氧颗粒生物膜;制粒;营养去除;操作条件;反应堆启动;

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