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High-strength nitrogenous wastewater treatment in biofilm and granule anammox processes

机译:生物膜和颗粒厌氧菌工艺中的高强度含氮废水处理

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Biofilm and granule reactors were employed to remove nitrogen via an anammox reaction applying synthetic nitrogen wastewater, whose concentration was in the range of 20 to 1,400 mg N/L as total nitrogen. A biofilm reactor was packed with non-woven fabric and a granule reactor was filled with anaerobic granular sludge taken from the brewery wastewater treatment plant. Both reactors were seeded with Planctomycetes KSU-1 and operated for 450 days. The biofilm reactor showed high NH4+-N and NO2--N removal efficiencies of over 88% and 94%, respectively, until total nitrogen concentration was reached at 800 mg N/L. However, the biofilm reactor showed severe inhibition at over 1,000 mg N/L of total nitrogen due to nitrogen overloading. The granule reactor revealed better nitrogen removal performance than the biofilm reactor, showing high NH4+-N and NO2--N removal efficiencies of over 90%, even at a total nitrogen concentration of 1,400 mg N/L. However, aggregation of anammox bacteria grown in the sludge bed after long-term operation resulted in the deterioration of nitrogen. The removal ratio of NH4+-N and NO2--N was close to 1:1, suggesting other reactions related to ammonium oxidation could occur simultaneously. Free ammonia inhibition as well as NO2--N could be significant when high-strength nitrogenous wastewater was applied.
机译:使用生物膜和颗粒反应器通过厌氧反应,通过应用合成氮废水的厌氧反应去除氮,合成氮废水的浓度为总氮浓度在20至1,400 mg N / L范围内。生物膜反应器装有无纺布,颗粒反应器装有从啤酒废水处理厂得到的厌氧颗粒污泥。两个反应器均接种了Planctomycetes KSU-1,并运行了450天。生物膜反应器显示出高的NH4 + -N和NO2--N去除效率,分别超过88%和94%,直到总氮浓度达到800 mg N / L为止。然而,由于氮过载,生物膜反应器在总氮超过1,000 mg N / L时显示出严重的抑制作用。颗粒反应器显示出比生物膜反应器更好的脱氮性能,即使在总氮浓度为1400 mg N / L时,也显示出90%以上的高NH4 + -N和NO2--N去除效率。但是,长期运行后,污泥床中生长的厌氧菌的聚集导致氮的劣化。 NH4 + -N和NO2--N的去除率接近1:1,表明其他与铵氧化有关的反应也可以同时发生。当使用高强度含氮废水时,游离氨的抑制作用以及NO2--N可能很重要。

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