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首页> 外文期刊>Environment protection engineering >BIOLOGICAL NUTRIENT REMOVAL USING A NOVEL FIVE-STEP CONTINUOUS FLOW ACTIVATED SLUDGE PROCESS TECHNOLOGY
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BIOLOGICAL NUTRIENT REMOVAL USING A NOVEL FIVE-STEP CONTINUOUS FLOW ACTIVATED SLUDGE PROCESS TECHNOLOGY

机译:新型五步连续流活性污泥处理技术去除生物营养

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摘要

An anaerobic-anoxic/oxic (AA/O) five-tank biological process called five-step continuous flow activated sludge process (FSCFASP) was developed to force the oscillation of organic matter and nutrient concentrations in process reactors. The run scheme and schematic diagram of FSCFASP was described. The run cycle was divided into two symmetrical half cycles with eight periods during each cycle. The duration of each period was established according to biological process requirements. The optimal running times of the periods were 90, 60, 60, 30, 90, 60,6 0 and 30 min at the HRT of 16 h, air/water ratio of 35% and SRT of 21 day at the temperature range of 19-23 ℃. The optimized system achieved 88.09±1.43%, 90.33±2.9%, 68.83±5.34% and 87.67±2.9% of the chemical oxygen demand, NH_4~+-N, TN, and TP removal efficiencies, respectively, during a 11-month operation with the effluent meeting the Chinese sewage discharge standard GB18918-2002 (level A). Simultaneous nitrification and denitrification phenomena were observed in the tank one which is important to reduce the quantity of aeration and the duration of a next anoxic state. Compared with other existing technologies, this system achieved high nitrogen and phosphorus removal without equipment of sludge and mixed liquor return. Thus, it is effective for reducing energy consumption.
机译:开发了一种称为五步连续流活性污泥法(FSCFASP)的厌氧-缺氧/氧(AA / O)五罐式生物工艺,以迫使工艺反应器中的有机物和营养物浓度振荡。描述了FSCFASP的运行方案和示意图。运行周期分为两个对称的半周期,每个周期有八个周期。每个时期的持续时间根据生物学过程要求确定。在温度为19的HRT为16 h,空气/水比为35%和SRT为21天的情况下,该时段的最佳运行时间分别为90、60、60、30、90、60,6 0和30分钟。 -23℃。优化的系统在运行11个月的过程中分别实现了88.09±1.43%,90.33±2.9%,68.83±5.34%和87.67±2.9%的化学需氧量,NH_4〜+ -N,TN和TP去除效率废水达到中国污水排放标准GB18918-2002(A级)。在一个罐中观察到同时发生硝化和反硝化现象,这对于减少曝气量和下一个缺氧状态的持续时间很重要。与其他现有技术相比,该系统实现了高氮和磷的去除,而没有污泥和混合液回流的设备。因此,对于减少能量消耗是有效的。

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  • 来源
    《Environment protection engineering》 |2013年第3期|165-184|共20页
  • 作者单位

    Faculty of Engineering, University of Basrah, Basra, Iraq,School of Energy and Environment, Southeast University, Sipailou Road, Nanjing 210096, PR China, Engineering Research Center of Taihu Lake Water Environment, Southeast University, Linghu Avenue Road, Wuxi 214135, China;

    Faculty of Engineering, University of Basrah, Basra, Iraq,School of Energy and Environment, Southeast University, Sipailou Road, Nanjing 210096, PR China, Engineering Research Center of Taihu Lake Water Environment, Southeast University, Linghu Avenue Road, Wuxi 214135, China;

    School of Energy and Environment, Southeast University, Sipailou Road, Nanjing 210096, PR China, Engineering Research Center of Taihu Lake Water Environment, Southeast University, Linghu Avenue Road, Wuxi 214135, China;

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