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Nitrogen removal assessment through nitrification rates and media biofilm accumulation in an IF AS process demonstration study

机译:在IF AS过程演示研究中通过硝化率和培养基生物膜积累来评估脱氮

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摘要

An IF AS demonstration study was conducted at the 76,000 m~3/day (20MGD) James River Wastewater Treatment Plant (JRTP) located in Newport News, Virginia by converting one fully-aerobic conventional aeration basin with dedicated secondary clarification to a 7041 m~3/day (8404 m~3/day max month) IFAS train in a modified Ludzack-Ettinger (MLE) configuration. During the study, biomass concentrations on the biofilm carriers were monitored (weekly) as well as nitrogen species concentrations in the IFAS reactor to quantify the nitrogen transformations occurring within the demonstration tank. In a related effort, nitrification kinetics for ammonia and nitrite oxidizing bacteria were monitored on a weekly basis for IFAS media alone, IFAS process mixed liquor without media, and IFAS mixed liquor and media together in an effort to identify the location of nitrification activity (i.e. on the media or in the suspended culture) in the IFAS process. Biomass quantity on the media was generally observed to be inversely related to temperature except during a period when an auxiliary carbon source contaminated with fungi was introduced. Both ammonia oxidizing and nitrite oxidizing bacterial activity were elevated on the carriers compared to the suspended culture (AOB_(media): 4.97 mgNOx/gMLSS/ hr; AOB_(susp)ended: 1-72 mgNOx/gMLSS/hr; NOB_(med)a: 7.55 mgNOx/gMLSS/hr; NOB_(suspended): 0.82 mgNOx/gMLSS/hr) during all periods of the study. In-basin nitrification rates calculated based on nitrogen profiling efforts averaged 0.90 mgNOx/m~2/day which was in good agreement with the average of 0.89 mgNOx/m~2/day for IFAS mixed liquor and media from batch testing.
机译:在位于弗吉尼亚州纽波特纽斯的76,000 m〜3 / day(20MGD)James River废水处理厂(JRTP)上进行了IF AS示范研究,方法是将一个完全需氧的常规曝气池改建成7041 m〜 IFAS火车采用改良的Ludzack-Ettinger(MLE)配置的3 /天(最大每月8404 m〜3 /天)。在研究过程中,监测(每周一次)生物膜载体上的生物质浓度以及IFAS反应器中的氮物种浓度,以量化示范罐内发生的氮转化。在相关工作中,每周仅对IFAS培养基,IFAS混合液(不含培养基),IFAS混合液和培养基一起监测氨和亚硝酸盐氧化细菌的硝化动力学,以鉴定硝化活性的位置(即IFAS流程中的媒体或悬浮文化)。通常观察到培养基上的生物量与温度成反比,除了在引入被真菌污染的辅助碳源的时期外。与悬浮培养物相比,载体上的氨氧化和亚硝酸盐氧化细菌活性均升高(AOB_(培养基):4.97 mgNOx / gMLSS / hr; AOB_(悬浮):1-72 mgNOx / gMLSS / hr; NOB_(med) a:在研究的所有阶段中,NOB_(暂停):0.82 mgNOx / gMLSS / hr; 7.55 mgNOx / gMLSS / hr;根据氮谱分析结果计算的流域内硝化速率平均为0.90 mgNOx / m〜2 /天,这与IFAS混合液和分批测试的介质的平均值为0.89 mgNOx / m〜2 /天非常吻合。

著录项

  • 来源
    《Water Research》 |2011年第20期|p.6699-6708|共10页
  • 作者单位

    Old Dominion University, Civil and Environmental Engineering, Rm 135 Kaufman Hall, Hampton Blud, Norfolk, VA 23529, USA;

    Virginia Polytechnic Institute and State University, USA;

    Old Dominion University, Civil and Environmental Engineering, Rm 135 Kaufman Hall, Hampton Blud, Norfolk, VA 23529, USA;

    Hampton Roads Sanitation District, USA;

    Hampton Roads Sanitation District, USA;

    Hampton Roads Sanitation District, USA;

  • 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

    biofilm carriers; IFAS; MLE; nitrogen; nutrient removal;

    机译:生物膜载体;IFAS;MLE;氮;营养去除;
  • 入库时间 2022-08-17 13:48:30

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