Fibrous Support Stabilizes Nitrification Performance of a Membrane-Aerated Biofilm : The Effect of Liquid Flow Perturbation
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概要
- 論文の詳細を見る
Nitrification stability and biofilm robustness were examined by comparing a fibrous support membrane-aerated biofilm reactor (FS-MABR), where a woven fibrous support was surrounded on a silicone tube, with an MABR. The overall mass transfer coefficient of oxygen for the FS-MABR, assuming no boundary layer between the fibrous material and bulk liquid, was 5.85 m/d at an air pressure of 27 kPa, which was comparable to that value of the MABR (5.54 m/d). The amount of biomass on the fibrous support with a silicone tube was 2.48 times larger than on the bare silicone. The biomass loss after a high liquid flow rate condition was 49% and 75% in the FS-MABR and MABR, exhibiting robust biofilms grown on the fibrous support. The FS-MABR provided more stable nitrification performance than the MABR irrespective of a high liquid flow rate. Both reactors have deteriorated ammonium (NH4+-N) removal without a high liquid flow rate condition to eliminate excessive biomass, indicating that regular maintenance is essential to eliminate excessive biofilm from a MABR for nitrification, which potentially acts as a NH4+ diffusion barrier.
- 社団法人 化学工学会の論文
- 2009-12-01
著者
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Tsuneda Satoshi
Department Of Chemical Engineering Waseda University
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Matsumoto Shinya
Department Of Life Science And Medical Bioscience Waseda University
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Matsumoto Shinya
Department Of Environmental Sciences Faculty Of Education And Human Sciences Yokohama National Unive
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Terada Akihiko
Department Of Allergy And Pediatrics Daido Hospital
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ITO Junpei
Department of Chemical Engineering, Waseda University
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Matsumoto Shinya
Department Of Applied Physics Faculty Of Engineering Yokohama National University
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Ito Junpei
Department Of Chemical Engineering Waseda University
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Terada Akihiko
Department Of Environmental Engineering Technical University Of Denmark
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