侯红勋, 陈伦强, 王淑莹, Takashi Mino, Hiroyasu Satoh. 用ORP作为氧化沟同步硝化反硝化控制参数[J]. 北京工业大学学报, 2006, 32(12): 1093-1096.
    引用本文: 侯红勋, 陈伦强, 王淑莹, Takashi Mino, Hiroyasu Satoh. 用ORP作为氧化沟同步硝化反硝化控制参数[J]. 北京工业大学学报, 2006, 32(12): 1093-1096.
    HOU Hong-xun, CHEN Lun-qiang, WANG Shu-ying, Takashi Mino, Hiroyasu Satoh. Use ORP to Control Simultaneous Nitrification and Denitrification in Oxidation Ditch Process[J]. Journal of Beijing University of Technology, 2006, 32(12): 1093-1096.
    Citation: HOU Hong-xun, CHEN Lun-qiang, WANG Shu-ying, Takashi Mino, Hiroyasu Satoh. Use ORP to Control Simultaneous Nitrification and Denitrification in Oxidation Ditch Process[J]. Journal of Beijing University of Technology, 2006, 32(12): 1093-1096.

    用ORP作为氧化沟同步硝化反硝化控制参数

    Use ORP to Control Simultaneous Nitrification and Denitrification in Oxidation Ditch Process

    • 摘要: 同步硝化反硝化(simultaneous nitrification and denitrification,简称SND)是氧化沟工艺实现优良脱氮效果的主要原因,为了较好实现SND,采用ORP作为氧化沟工艺SND的控制参数.采用缺氧-厌氧-氧化沟模型对市政污水进行了生物脱氮研究.UORP在-30~30 mV,NH4+和NO3-的含量均比较低,发生了较好的SND;UORP在30 mV以上,出水的总无机氮(TIN)中95%以上为NO3-,该状况下硝化效果良好,UORP在-30 mV以下,硝化不充分,出水的TIN中78%以上为NH4+;UORP在-30~30 mV,TN的去除率在88%以上,SND作用去除的NO3-占总的NO3-去除的99%以上;氧化沟中的NH4+和NO3-之比的对数与UORP有着很好的相关性,相关系数R=-0.97.

       

      Abstract: Simultaneous nitrification and denitrification(SND) is the main reason to the high nitrogen removal of oxidation ditch process.To achieve SND at high efficiency,redox potential(ORP) was used as a controlling parameter.This paper finds that:1) UORP can indicate SND,if UORP is between-30 mV to 30 mV,SND progress favorably,but if UORP is more than 30 mV,nitrification can be produced enough,denitrification is low,if UORP is lower than-30 mV,the result is the reverse to UORP more than 30 mV.2) If the UORP is between-30 mV to 30 mV,the rate of total inorganic nitrogen is more than 88%,the NO-3 being removed is about 99% of the total NO3- being removed.3) The logarithm of the ratio of NH4+-N to NO3- is a linear correlation,R is -0.97.

       

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