Tamon Hajime | Department Of Chemical Engineering Graduate School Of Engineering Kyoto University
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概要
関連著者
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Tamon Hajime
Department Of Chemical Engineering Graduate School Of Engineering Kyoto University
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Tamon Hajime
Dep. Of Chemical Engineering Kyoto Univ.
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Tamon H
Department Of Chemical Engineering Kyoto University
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Tamon H
Kyoto Univ. Kyoto Jpn
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Tamon H
Department Of Chemical Engineering Graduate School Of Engineering Kyoto University
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Tamon H
Kyoto Univ. Kyoto
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Okazaki Morio
Department Of Chemical Engineering Kyoto University
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Okazaki Morio
Department of Chemical Engineering, Kyoto University
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Sano Noriaki
Department Of Chemical Engineering Faculty Of Engineering Himeji Institute Of Technology
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Tamon Hajime
Department Of Chemical Engineering Kyoto University
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Okazaki M
Kyoto Univ. Kyoto Jpn
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Okazaki M
Department Of Chemical Engineering Kyoto University
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Tanthapanichakoon W
National Nanotechnology Center National Science And Technology Development Agency
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TANTHAPANICHAKOON WIWUT
Department of Chemical Engineering, Chulalongkorn University
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Tanthapanichakoon Wiwut
Department Of Chemical Engineering Chulalongkorn University
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岡崎 守男
京大
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Charinpanitkul Tawatchai
Department Of Chemical Engineering Chulalongkorn University
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SANO NORIAKI
Department of Chemical Engineering, Himeji Institute of Technology
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Charinpanitkul Tawatchai
東京大学工学部化学システム工学科
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Sano Noriaki
Department Of Mechanical And System Engineering Himeji Institute Of Technology University Of Hyogo
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Charinpanitkul T
Center Of Excellence In Particle Technology Chulalongkorn University
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Sano N
Department Of Mechanical And System Engineering Himeji Institute Of Technology University Of Hyogo
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CHARINPANITKUL TAWATCHAI
Department of Chemical Engineering, Chulalongkorn University
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NAKAGAWA Kyuya
Department of Mechanical Engineering, University of Hyogo
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SUZUKI Tetsuo
Department of Chemical Engineering, Kyoto University
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Suzuki Tetsuo
Department Of Chemical Engineering Kyoto University
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Nakagawa Kyuya
Department Of Mechanical Engineering University Of Hyogo
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Nakagawa Kyuya
Department of Mechanical and System Engineering, University of Hyogo
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TOEI RYOZO
Department of Chemical Engineering, Kyoto University
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Mukai S
Division Of Chemical Process Engineering Graduate School Of Engineering Hokkaido University
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Mukai Shin
Division Of Chemical Process Engineering Graduate School Of Engineering Hokkaido University
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DHATTAVORN NANTAMAS
Department of Chemical Engineering, Chulalongkorn University
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CHAIYO SAHAT
Department of Chemical Engineering, Chulalongkorn University
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TAKASE Kenji
Department of Chemical Engineering, Kyoto University
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MIURA Hiroki
Kao Corp.
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Kraiwattanawong Kriangsak
Department of Chemical Engineering, Faculty of Engineering, King Mongkuts Institute of Technology La
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Praserthdam Piyasan
Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University
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TANTHAPANICHAKOON Wiwut
National Nanotechnology Center
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ABE Masato
Department of Chemical Engineering, Kyoto University
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Suzuki T
Department Of Chemical Engineering Kyoto University
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Abe Masato
Department Of Chemical Engineering Kyoto University
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Chaiyo S
Department Of Chemical Engineering Chulalongkorn University
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Takase Kenji
Department Of Chemical Engineering Kyoto University
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Takase Kenji
Department Of Biotechnology National Institute Of Agrobiological Resources
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Sakano Tadaaki
Central Research Laboratories Ajinomoto General Foods Inc.
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Dattavorn N
Department Of Chemical Engineering Chulalongkorn University
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Dhattavorn Nantamas
Department Of Chemical Engineering Chulalongkorn University
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Abe Masato
Department Of Biotechnology The University Of Tokyo
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Chaiyo Sahat
Department Of Chemical Engineering Chulalongkorn University
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Ikeyama Yusuke
Department of Chemical Engineering, Kyoto University
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Sugiyama Toru
Department of Obstetrics and Gynecology, Iwate Medical University
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TANAKA Hidenori
Department of Applied Chemistry, Faculty of Engineering, Osaka University
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Shirai Yoshihito
Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology
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LARPSURIYAKUL Kittisak
Department of Chemical Engineering, Chulalongkorn University
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CHARIPANITKUL Tawatchai
Department of Chemical Engineering, Chulalongkorn University
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NAGAMOTO Toshiki
Department of Chemical Engineering, Kyoto University
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SAKANO Tadaaki
Central Research Laboratories, Ajinomoto General Foods Inc.
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TAMURA Kazuhisa
Department of Chemical Engineering, Kyoto University
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MUKAI Shin
Department of Chemical Engineering, Kyoto University
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HIRANO Makoto
Department of Chemical Engineering, Kyoto University
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HAYAKAWA Tatsuya
Department of Chemical Engineering, Kyoto University
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SITTIPRANEED Sittidej
Department of Chemical Engineering, Chulalongkorn University
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JAPTHONG Pannada
Department of Chemical Engineering, Chulalongkorn University
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BOON-AMNUAYVITAYA Virote
Department of Chemical Engineering, King Mongkut's University of Technology Thonburi
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SUEOKA Yoshihito
Department of Chemical Engineering, Kyoto University
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KHONGPRASARNKALN Paisarn
Department of Chemical Engineering, Chulalongkorn University
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ABURAI Koji
Department of Chemical Engineering, Kyoto University
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Miyahara Minoru
Department Of Chemical Engineering Kyoto University
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Nagamoto Toshiki
Department Of Chemical Engineering Kyoto University
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Praserthdam Piyasan
Department Of Chemical Engineering Faculty Of Engineering Chulalongkorn University
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Aburai Koji
Department Of Chemical Engineering Kyoto University
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Aburai Koji
Department Of Chemical Engineering Faculty Of Engineering Kyoto University
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Sugiyama Toru
Department Of Chemistry Faculty Of Science And Technology Sophia University
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Sakano T
Central Research Laboratories Ajinomoto General Foods Inc.
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Ohmori Takao
National Institute Of Advanced Industrial Science And Technology
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Tamura Kazuhisa
Department Of Chemical Engineering Kyoto University
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Hayakawa Tatsuya
Department Of Chemical Engineering Kyoto University
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Japthong Pannada
Department Of Chemical Engineering Chulalongkorn University
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Boon-amnuayvitaya Virote
Department Of Chemical Engineering King Mongkut's University Of Technology Thonburi
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Sugiyama Toru
Department Of Chemical Engineering Kyoto University
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Hirano Makoto
Department Of Chemical Engineering Kyoto University
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Sittipraneed Sittidej
Department Of Chemical Engineering Chulalongkorn University
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Imakoma Hironobu
Department Of Chemical Science And Engineering Faculty Of Engineering Kobe University
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Larpsuriyakul Kittisak
Department Of Chemical Engineering Chulalongkorn University
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Tanaka Hidenori
Department Of Chemical Engineering Kyoto University
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Endo Akira
National Institute For The Agro-environmental Sciences
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Shirai Yoshihito
Graduate School Of Life Science And System Engineering Kyushu Institute Of Technology
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Sueoka Yoshihito
Department Of Chemical Engineering Kyoto University
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Tanaka Hidenori
Department Of Applied Chemistry Faculty Of Engineering Osaka University
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Khongprasarnkaln Paisarn
Department Of Chemical Engineering Chulalongkorn University
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CHAICHANAWONG JINTAWAT
Department of Chemical Engineering, Chulalongkorn University
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Kraiwattanawong Kriangsak
Department Of Chemical Engineering Faculty Of Engineering King Mongkut's Institute Of Technology Ladkrabang
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Saito Takashi
Department Of Agronomy Faculty Of Agriculture Tohoku University
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MIYAHARA Minoru
Department of Chemical Engineering, Faculty of Engineering, Kyoto University
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Kishimura Masaaki
Department of Chemical Engineering, Kyoto University
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Yamamoto Takuji
National Institute of Advanced Industrial Science and Technology
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Charinpanitkul Tawatchai
Center of Excellence in Particle Technology (CEPT), Department of Chemical Engineering, Chulalongkorn University
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Soottitantawat Apinan
Center of Excellence in Particle Technology (CEPT), Department of Chemical Engineering, Chulalongkorn University
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Shinomiya Hiroki
Department of Mechanical and System Engineering, University of Hyogo
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Eiad-Ua Apiluck
National Institute of Advanced Industrial Science and Technology
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Iwase Kazumi
Department of Chemical Engineering, Kyoto University
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WADA HIROYUKI
Department of Chemical Engineering, Kyoto University
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Tanthapanichakoon Wiwut
National Nanotechnology Center, National Science and Technology Development Agency Klong Luang
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KYOTANI SUSUMU
Department of Chemical Engineering, Kyoto University
著作論文
- HCl Treatment on Micropore and Mesopore Structures of Carbon Cryogels from Resorcinol and Formaldehyde
- Influence of Electric Field Strength in a High-Temperature Corona Discharge Reactor on Removal of Toluene from Nitrogen and Air
- Development of Odor Control Technology for Crematory Furnace Using Corona Discharge Reaction
- STRUCTURE FORMATION DURING DRYING OF COATING LAYER OF MAGNETIC PARTICULATE CONTAINING SOLVENT MIXTURE
- INFLUENCE OF DRYING CONDITIONS ON VOID CHARACTERISTICS OF COATING LAYER OF MAGNETIC PARTICULATE
- Effect of Structure of Corona-Discharge Reactor on Removal of Dilute Gaseous Pollutants Using Selective Electron Attachment
- REMOVAL OF IODINE AND METHYL IODIDE IN GAS BY WETTED-WALL REACTOR BASED ON SELECTIVE ELECTRON ATTACHMENT
- Selective Removal of Methyl Mercaptan in Coffee Aroma Using Oxidized Microporous Carbon
- Porous Properties of Activated Carbons Prepared from Mixtures of Synthesized Phenolic Resins with Metal Salts
- Preparation and Characterization of Activated Carbons from Wastes Generated during Lactic Acid Fermentation from Garbage
- AB INITIO MOLECULAR ORBITAL STUDY ON GAS-PHASE ADSORPTION ON SILICA GEL
- An ab Initio MO Study on Gas-Phase Adsorptive Interactions of Aromatic Compounds onto the Surface of Silica Gel
- Effect of Supercritical Water Treatment on Porous Structure, Liquid-Phase Adsorption and Regeneration Characteristics of Activated Anthracite
- Removal of Trimethylamine in Gas by Corona-Discharge Reactor
- SOLVENT DEPENDENCE OF AFFINITY COEFFICIENT FOR PHENOL ADSORPTION ON ACTIVATED CARBON
- INTERPRETATION OF ADSORPTIVE INTERACTION IN AQUEOUS SOLUTION BY FRONTIER ORBITAL THEORY
- Decomposition of Phenol in Water by Ozone Oxidation with Metal-Supported Carbongel
- HCl Treatment on Micropore and Mesopore Structures of Carbon Cryogels from Resorcinol and Formaldehyde
- High-Temperature Removal of Acetaldehyde in a Corona Discharge Reactor
- In Situ Estimation of Selective Capture of Tungsten Carbide Particles from Mixture with Diatomite Particles by Mesh-Stacked Dielectrophoresis Separator
- Surface flow phenomenon of adsorbed gases on activa ted alumina.
- Wetted-Wall Dielectrophoretic Separator for Collection of TiO2 from SiO2-TiO2 Particle Mixture Dispersed in Ethanol
- Adsorption Selectivity of Coffee Aroma Components on Zeolite 5A.
- Wetted-Wall Dielectrophoretic Separator for Collection of TiO_2 from SiO_2- TiO_2 Particle Mixture Dispersed in Ethanol
- Solvent regeneration of spent activated carbon in wastewater treatment.
- Distribution of water content in cylindrical activated alumina on vacuum drying.