Phytoplankton Decomposition Process (PDP) Model Dealing with Carbon and Nitrogen Budget on Particulate Organic Matter
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概要
- 論文の詳細を見る
Rate processes involved in the changes in the ratio of particulate organic carbon and particulate organic nitrogen (POC/PON ratio) in the decomposition of phytoplankton were clarified. First, we did two decomposition experiments using substrates whose high C/N ratio was more than two times higher than the Redfield ratio: (a) decomposition of Porphyridium purpureum (POC/PON = 17) and (b) decomposition of Skeletonema costatum (POC/PON = 6.5) in the presence of three times as much organic matter of glucose, which consequently increased the initial C/N ratio by more than a factor of four. In both experiments, the same mechanism was observed: POC decreased linearly while PON remained constant when the C/N ratio was high (>6). Then, we did decomposition experiments of extracted DOM of Skeletonema costatum in the presence and absence of a predator (heterotrophic nanoflagellates (HNF) and zooplankton). Finally, we developed a simple kinetic model of the phytoplankton decomposition process (PDP model). This model with fixed decomposition rate constants fits well with the results of the decomposition experiments where the initial C/N ratio and the volume ratio of POM and DOM differed by a factor of more than three. Our simple PDP model can explain well both the formation processes of semi-refractory POM (SR-POM) and the processes involved in the changes in the POC/PON ratio.
- 社団法人 化学工学会の論文
- 2003-04-01
著者
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FUJII Minoru
Department of Electrical and Electronics Engineering, Faculty of Engineering, Kobe University
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Fujii M
Sustainable Material Cycles Management Section Research Center For Material Cycles And Waste Managem
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MIYASAKA HITOSHI
Kansai Electric Power Co., Technical Research Center
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Ohnishi Yuka
Department of Chemical Science and Engineering, Kobe University
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SUZUKI Yoshimi
Department of Nutritional Science, Tokyo University of Agriculture
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Miyasaka Hitosihi
The Kansai Electric Power Co. Environmental Research Center
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Miyasaka Hitoshi
Kansai Electric Power Co. Inc.
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Miyasaka Hitoshi
Kansai Electric Power Co. Technical Research Center Environmental Research Center:rite Amagasakti 2n
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Fujii M
Kobe Univ.
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Ohnishi Yuka
Graduate School Of Science And Engineering Shizuoka University
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Ohnishi Yuka
Department Of Chemical Science And Engineering Kobe University
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Suzuki Y
Shizuoka Univ. Jpn
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KOMIYAMA Hiroshi
Department of Chemical System Engineering, The University of Tokyo
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Miyasaka Hitoshi
Department Of Chemistry Faculty Of Science Tokyo Metropolitan University
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MURASHIGE SHINICHIRO
Graduate school of Engineering, University of Tokyo
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YUZAWA ATSUSHI
Japan NUS Co., Ltd.
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MURASHIGE SHINICHIRO
Department of Chemical System Engineering, School of Engineering, University of Tokyo
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Yuzawa Atsushi
Japan Nus Co. Ltd.
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Murashige Shinichiro
Graduate School Of Engineering University Of Tokyo
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Komiyama H
Department Of Chemical System Engineering School Of Engineering University Of Tokyo
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Komiyama Hiroshi
Department Of Chemical Engineering Faculty Of Engineering University Of Tokyo
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Suzuki Yoshimi
Department Of Nutritional Science Tokyo University Of Agriculture
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Miyasaka Hitoshi
Kansai Electric Co. Environmental Research Center
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Fujii Minoru
Department of Chemical Engineering System, School of Engineering, The University of Tokyo
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