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饮用水生物处理小试工艺中NH4+-N的非硝化去除途径分析

Non-nitrification Pathway for NH4+-N Removal in Pilot-Scale Drinking Water Biological Processes

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【作者】 于鑫叶林李旭东张晓健施旭刘波李睿华

【Author】 YU Xin~1,YE Lin~1,LI Xu-dong~2,ZHANG Xiao-jian~3,SHI Xu~1,LIU Bo~1, LI Rui-hua~1(1.State Key Laboratory of Pollution Control and Resource Reuse,School of the Environment,Nanjing University,Nanjing 210093,China;2.Chengdu Institute of Biology,Chinese Academy of Sciences,Chengdu 610041,China;3.Department of Environmental Science and Engineering,Tsinghua University,Beijing 100084,China)

【机构】 南京大学环境学院污染控制与资源化国家重点实验室中国科学院成都生物研究所清华大学环境科学与工程系南京大学环境学院污染控制与资源化国家重点实验室 南京210093南京210093成都610041北京100084

【摘要】 通过计算N和DO的质量平衡,研究饮用水生物处理小试工艺中是否存在NH4+-N的非硝化去除途径,并探讨其可能机制.结果表明,当生物流化床和生物滤池进水NH4+-N浓度大于2 mg/L时,前者进水的NH4+-N、NO2--N和NO3--N之和比出水高出0.91 mg/L,后者理论上消耗的DO比实际多约2.90 mg/L,说明这2种工艺中均有氮亏损现象发生,一部分NH4+-N通过与DO无关的非硝化作用被去除.对非硝化去除途径的分析表明,因为反应器对磷元素和有机物的利用不随氮亏损发生变化,可以排除掉同化作用和反硝化作用;因为反应器进水低碳高氮的特性和NO2--N的积累与发生氮亏损的废水生物处理系统相似,据此提出在生物膜缺氧内部发生、通过短程硝化和厌氧氨氧化的偶联(或OLAND反应)将NH4+-N和NO2--N同时转变为N2脱除的自养脱氮是饮用水生物处理中氮亏损的可能途径.

【Abstract】 The non-nitrification pathway for NH+4-N removal in pilot-scale drinking water biological treatment processes and its possible mechanism were investigated through calculating N and DO stoichiometric balance.With more than 2(mg/L) NH+4-N in the influent,for the fluidized bed bioreactor(FBBR),the total of NH+4-N,(NO-2-N),(NO-3-N) in the influent was 0.91(mg/L) higher than that in the effluent,and for the biofilter,its DO consumption was 2.90(mg/L) less than the stoichiometric amount.The results suggested that nitrogen loss occurred in both reactors and a part of NH+4-N was removed through non-nitrification pathway.Because the utilization of phosphorus and organic matters was independent of nitrogen loss,the assimilation and denitrification could be excluded from the possible mechanisms.Because the very low(C/N) in the influent and the accumulation of(NO-2-N) in the reactors were similar with the wastewater biological processes,the "autotrophic removal of nitrogen" was regarded as the most probable non-nitrification pathway.In this mechanism,the couple of short-cut nitrification and ANAMMOX(or OLAND) leading to the transformation of NH+4-N and(NO-2N) into gaseous N2 was responsible for the nitrogen loss in drinking water biological processes.

【基金】 国家自然科学基金项目(50678080)
  • 【文献出处】 环境科学 ,Environmental Science , 编辑部邮箱 ,2008年04期
  • 【分类号】TU991.2
  • 【被引频次】17
  • 【下载频次】407
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