Utilization of woody resources by compressive molding process using high-pressure saturated steam distillation : Isolation and analysis of steam distilled components
スポンサーリンク
概要
- 論文の詳細を見る
- 2002-03-15
著者
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Matsukura Makoto
Dryades Co Ltd.
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Tanahashi M
Gifu Univ. Gifu Jpn
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Tanahashi Mitsuhiko
Faculty Of Agriculture Gifu University
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SHIGEMATSU Mikiji
Faculty of Agriculture, Gifu University
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SUZUKI Masashi
Faculty of Agriculture, Gifu University
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YOSHITANI Kouzou
Faculty of Agriculture, Gifu University
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KYOMORI Ken-ichi
Graduate school of Engineering, Gifu University
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TORIMOTO Hajime
Dryades co, Ltd.
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KYOMORI Ken-ichi
Dept. Bioprocessing, Graduate School of Engineering, Gifu University
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SUZUKI Masashi
Dept. Bioprocessing, Faculty of Agriculture, Gifu University
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Torimoto Hajime
Dryades Co Ltd.
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Kyomori Ken-ichi
Dept. Bioprocessing Graduate School Of Engineering Gifu University
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Yoshitani Kouzou
Faculty Of Agriculture Gifu University
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Shigematsu Mikiji
Dept. Bioprocessing Faculty Of Agriculture Gifu University
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Shigematsu Mikiji
Faculty Of Agriculture Gifu University
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Suzuki Masashi
Dept. Bioprocessing Faculty Of Agriculture Gifu University
関連論文
- Structural Analysis for Cellulose Fibers Treated by High Pressure Steam
- Utilization of woody resources by compressive molding process using high-pressure saturated steam distillation : Isolation and analysis of steam distilled components
- Utilization of woody resources by compressive molding process with high-pressure steam : development of biomass boards fabricated from wood residue without chemical adhesives
- Transition state leading to β-O' quinonemethide intermediate of p-coumaryl alcohol analyzed by semi-empirical molecular orbital calculation
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- The viscosities and molal volumes of t-butyl alcohol in metal chelate electrolyte solutions.
- Volume changes and equilibrium constants for protonation of (M(edta))2-.
- Partial molal volumes and volume changes for the complex formation of metal chelate electrolytes, Na2(M(edta)) and K(M(hedta)(H2O)).
- Partial molal volumes and volume changes for complex formation of (M(phen)3)Cl2 in aqueous solutions.