Decolorization of Heat-TreatmentLiquor of Waste Sludge by a Bioreactor Using Polyurethane Foam-Immobilized White Rot Fungus Equipped with an Ultramembrane Filtration Unit
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概要
- 論文の詳細を見る
A bench-scale bioreactor using immobilized fungal cells equipped with an ultramembrane filtration unit was developed as a means of decolorizing brown color components (melanoidins) arising from the heat-treatment liquor (HTL) of waste sludge. Artificial HTL containing 4200 color units of synthetic melanoidin supplemented with 1000mg/l ethanol was first subjected to decolorization by the fungus Coriolus hirsutus IFO4917 immobilized onto polyurethane foam cubes. Then, the resultant biologicvally treated HTL was subjected to ultrafiltration to obtain the permeate (filtrate) as the effluent. The retentate (concentrate) of the filtration unit, containing the remaining melanoidin of high molecular weight and extracellular decolorizing enzymes, was returned to the fungal bioreactor to allow further decolorization. This system was operated in a sequencing batch mode under nonsterile conditions. Contamination of the bioreactor with air/water-born microbes markedly lowered the decolorization efficiency. However, this problem was solved by heating the returned concentrate at 50℃ for 10 min. Under the almost stable condition of a hydraulic retention time of 2 d in a 1-d cycle sequencing batch mode, about 70% decolorization was routinely achieved using the entire system (bioreactor + ultrafiltration), while the contribution of the fungal bioreactor alone to the decolorization was about 45%.
- 社団法人日本生物工学会の論文
- 2000-10-25
著者
-
Ike Michihiko
Department Of Environmental Engineering Graduate School Of Engineering Osaka University
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FUJITA Masanori
Department of Environmental Engineering, Osaka University
-
Miyata Naoyuki
Institute for Environmental Sciences, University of Shizuoka
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Fujita M
Kochi National College Of Technology
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Fujita Masanori
Kochi National College of Technology
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Hirao Tomohiko
Takuma Co., Ltd.
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SODA Satoshi
Department of Global Architecture, Graduate School of Engineering, Osaka University
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Fujita Masanori
Environ. Eng. Osaka Univ.
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Fujita Masanori
Graduate School Of Engineering Osaka University
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Ike Michihiko
Division Of Sustainable Energy And Environmental Engineering Osaka University
-
Ike Michihiko
大阪大学 環境・エネルギー工学専攻
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Soda S
National Institute For Environmental Studies
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Soda Satoshi
Department Of Environmental Engineering Osaka University
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Miyata Naoyuki
Institute For Environmental Sciences University Of Shizuoka
-
Ike Michihiko
Environ. Eng. Osaka Univ.
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Fujita Masakatsu
Kochi National College Of Technology
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ERA AKIRA
Department of Environmental Engineering, Osaka University
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HIRAO TOMOHIKO
Eneergy and Environmental Development Department, Takuma Co. Ltd.
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Fujita M
Department Of Environmental Engineering Osaka University
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Ike Michihiko
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Ike M
Division Of Sustainable Energy And Environmental Engineering Graduate School Of Engineering Osaka Un
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Fujita M
Graduate School Of Biosphere Science Hiroshima University
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Fujita Masanori
Department Of Environmental Engineering Faculty Of Engineering Osaka University
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Fujita Masanori
Department Of Cardiology Saiseikai Izuo Hospital
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Era Akira
Department Of Environmental Engineering Osaka University
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Fujita Masanori
Department Of Animal Science Faculty Of Agriculture Tohoku University:(present Address) Department O
-
lke Michihiko
Department of Environmental Engineering, Osaka University
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SODA SATOSHI
Division of Sustainable Energy and Environmental Engineering, Graduate School of Engineering, Osaka University
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