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Completely Autotrophic Nitrogen-removal over Nitrite in Two Types of Reactors

Completely Autotrophic Nitrogen-removal over Nitrite in Two Types of Reactors
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摘要 Two lab-scale reactors, suspended-sludge and fluidized.bed, were conducted with the feed of ammonium-rich synthetic wastewater devoid of COD. Completely autotrophic nitrogen-removal process was fulfilled in both reactors and the maximum efficiencies of nitrogen removal were achieved, 65% in the suspended-sludge reactor and 73% in the fluidized-bed reactor respectively. Different from the steady performance of the fluldized-bed reactor, the suspended-sludge reactor came to deteriorate constantly after a period of stable operation, resulting in almost complete loss of the N-removal ability in the suspending system. Molecular methods such as PCR and FISH were employed for describing the microbial characteristics in two systems. This study suggests that a biofllm system is a suitable configuration for completely autotrophic N-removal with more feasibility and stability than a suspending system. Two lab-scale reactors, suspended-sludge and fluidized-bed, were conducted with the feed of ammonium-rich synthetic wastewater devoid of COD. Completely autotrophic nitrogen-removal process was fulfilled in both reactors and the maximum efficiencies of nitrogen removal were achieved, 65% in the suspended-sludge reactor and 73% in the fluidized-bed reactor respectively. Different from the steady performance of the fluidized-bed reactor, the suspended-sludge reactor came to deteriorate constantly after a period of stable operation, resulting in almost complete loss of the N-removal ability in the suspending system. Molecular methods such as PCR and FISH were employed for describing the microbial characteristics in two systems. This study suggests that a biofilm system is a suitable configuration for completely autotrophic N-removal with more feasibility and stability than a suspending system.
出处 《Journal of Donghua University(English Edition)》 EI CAS 2005年第4期29-32,共4页 东华大学学报(英文版)
基金 SupportedbyNationalNaturalScienceFoundationofChina.(No.50278053).
关键词 nitrogen-removal ammonium-rich wastewater activated sludge FISH(Fluorescent In Situ Hybridization). 富铵废水 亚硝酸盐 自养生物反应 除氮 活性污泥 荧光原位杂交
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