Anammox Trearment Potential In an Up-Flow Column Reactor using A Novel AcrylicFiber Biomass Carrier
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概要
- 論文の詳細を見る
In this study, a novel acryl fiber biomass carrier (ABC) was applied for anammoxresearch in an up-flow column reactor. This material could retain anammox microorganismefficiently and the average weight of attached sludge in the bottom part of the reactor wascalculated to be 0.14 g-TSS/cm3 ABC. High removal efficiencies of ammonium, nitrite andTN were obtained at a high volumetric loading rate of 2.0 kg-TN/m3/d. Furthermore,anammox activity did not decrease significantly with decreasing temperature, e.g., whenthe temperature decreased from 33.0℃ to 26.2℃, nitrite removal efficiencies decreasedonly about 5% (from 94% to 89%). Scanning electronic microphotographs revealed thatthe microorganisms were in a compacted state when attached on the support material.Based on the analysis of 16S rDNA, two close matches of anammox bacteria, KSU-1 andKOLL2a, were detected. This material showed potential for treatment of wastewater withlow concentrations of nitrogen using a short hydraulic retention time.
- 日本水処理生物学会誌,Japanese Society of Water Treatment Biologyの論文
- 2007-03-15
著者
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Furukawa Kenji
Graduate School of Science and Technology, Kumamoto University
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Furukawa K
Department Of Civil Engineering And Architecture Faculty Of Engineering Kumamoto University
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Furukawa Kenji
Graduate School Of Sci. And Technol. Kumamoto Univ. 2-39-1 Kurokami Kumamoto 860-8555 Jpn
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Furukawa Kenji
Graduate School Of Science And Technology Kumamoto University
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Qiao Sen
Graduate School of Science and Technology, Kumamoto University
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CHENG Yingjun
Graduate School of Science and Technology, Kumamoto University
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Cheng Yingjun
Graduate School Of Science And Technology Kumamoto University
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Kawagoshi Yasunori
Graduate School of Science and Technology, Kumamoto University
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LIU ZHIJUN
Department of Chemical Equipment and Control Engineering, School of Chemical Engineering, Dalian Uni
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FUJIMOTO AYA
Graduate School of Science and Technology, Kumamoto University
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KOYAMA TOHICHIROH
NET Co. Ltd.
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Fujimoto Aya
Faculty Of Engineering Kumamoto University
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Qiao Sen
Graduate School Of Science And Technology Kumamoto University
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Liu Zhijun
Department Of Chemical Equipment And Control Engineering School Of Chemical Engineering Dalian Unive
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Kawagoshi Yasunori
Graduate School Of Science And Technology Kumamoto University
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Fujimoto Aya
Graduate School Of Integrated Arts And Sciences University Of Tokushima
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Furukawa Kenji
Department Of Applied Life Science Faculty Of Engineering Sojo University
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Fujimoto Aya
Graduate School Of Integrated Arts And Sciences Univ. Of Tokushima
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喬 森
Graduate School of Science and Technology, Kumamoto University
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成 英俊
Graduate School of Science and Technology, Kumamoto University
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劉 志軍
Department of Chemical Equipment and Control Engineering, School of Chemical Engineering, Dalian University of Technology
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Yasunori Kawagoshi
Graduate School of Science and Technology, Kumamoto University
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Aya Fujimoto
Graduate School of Science and Technology, Kumamoto University
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Tohichiroh Koyama
NET Co. Ltd.
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Kenji Furukawa
Graduate School of Science and Technology, Kumamoto University
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