MATSUE Naoto | Ehime Univ.
スポンサーリンク
概要
関連著者
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MATSUE Naoto
Ehime Univ.
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HENMI Teruo
Ehime Univ.
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Matsue N
Ehime Univ.
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Matsue N
Faculty Of Agriculture Ehime University
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Henmi T
Faculty Of Agriculture Ehime University
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Henmi Teruo
Faculty Of Agricultural Ehime University
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Matsue Naoto
Faculty Of Agricultural Ehime University
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Johan Erni
Faculty Of Agriculture Ehime University
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Johan Erni
愛媛大農
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Johan Erni
愛媛大・農
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Matsue Naoto
Applied Chemistry For Env. Industry Ehime Univ.
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ELSHEIKH MOHAMMED
Laboratory of Applied Chemistry for Environmental Industry, Faculty of Agriculture, Ehime University
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Matsue Naoto
愛大農
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Henmi Teruo
愛大農
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Elsheikh Mohammed
Laboratory Of Applied Chemistry For Environmental Industry Faculty Of Agriculture Ehime University
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Matsueda N
Ehime Univ.
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Henmi Teruo
Applied Chemistry For Env. Industry Ehime Univ.
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Elsheikh Mohammed
Ehime Univ.
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Padilla Gay
Fac.agric. Ehime University
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Padilla Gay
愛大農
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Nartey Eric
Faculty Of Agriculture Ehime University
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Khan Hamayoon
Ehime Univ.
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Johan Erni
Fac. Of Agriculture Ehime Univ.
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Kugbe Joseph
Ehime Univ.
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Henmi Teruo
Fac. Of Agric. Ehime Univ.
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Henmi Teruo
Fac.agric. Ehime Univ.
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Matsue Naoto
Fac. Of Agric. Ehime Univ.
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MATSUE Naoto
Fac.Agric.,Ehime University
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FUKUGAICHI Satoru
Ehime Institute of Industrial Technology
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Johan Erni
愛大農
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PADILLA GAY
Faculty of Agriculture, Ehime University
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Matsue Naoto
Fac. Agriculture Ehime Univ.
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Sadoh Taizoh
Department Of Electronics Faculty Of Engineering Kyushu University
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NARUMI Kazumasa
Japan Atomic Energy Agency
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Munthali Moses
Ehime Univ.
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Maeda Yoshihito
Department Of Electronic Engineering University Of Surrey
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Sugiyama Osamu
Shizuoka Industrial Research Institute:(present Address)hamamatsu Industrial Research Institute Of S
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Miyao Masanobu
Department Of Electronics Kyushu University
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Henmi Teruo
Department Of Agricultural Chemistry Faculty Of Agriculture Ehime University
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Matsue Naoto
Department Of Agricultural Chemistry Faculty Of Agriculture Ehime University
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SAKAMOTO TAKABUMI
Faculty of Risk and Crisis Management, Chiba Institute of Science
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Ghoneim Adel
Faculty Of Agriculture Ehime University
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SUGIYAMA Osamu
Fuji Industrial Research Institute of Shizuoka Prefecture
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ANDO TAKAO
Faculty of Risk and Crisis Management, Chiba Institute of Science
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HIYOSHI KIMIO
Fuji industrial research institute of Shizuoka prefecture
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UEKI Masaya
SHIMADZU System Solutions Co., Ltd.
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Yamauchi Mayumi
松山市役所
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FUKUGAICHI Satoru
Paper Industrial Research Institute of Ehime Pref.
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JOHAN Erni
Fac.Agric.,Ehime University
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Elsheikh Mohammed
Faculty of Agriculture Ehime University
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Ghoneim Adel
愛大農
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Sugiyama O
Fuji Industrial Research Institute Of Shizuoka Prefecture
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Ueki Masaya
Shimadzu System Solutions Co. Ltd.
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Hamayoon Khan
Ehime Univ.
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Sakamoto Takabumi
Faculty Of Risk And Crisis Management Chiba Institute Of Science
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Henmi Teruo
Department Of Agricultural Chemistly Faculty Of Agriculture Ehime University
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Ando Takao
Faculty Of Risk And Crisis Management Chiba Institute Of Science
著作論文
- B2 Reaction of NaP1 artificial zeolite with acids of different anion species in relation to acid soil amelioration
- P15 Interaction between water molecule and surface structure of soil particles in relation to crop cultivation
- A14 Effect of Grinding on Water Adsorption of Nano-ball Allophane
- ADSORPTION MECHANISM OF Pb ON PAPER SLUDGE ASH TREATED BY NaOH HYDROTHERMAL REACTUION
- P29 Formation of Na-X zeolite from paper sludge ash and its application for toluene adsorption
- B20 Synthesis of CeO_2-ZSM-11 Nanocomposite from Inorganic Silicon Source and its Characterization
- 4-4 Synthesis of TiO2-Zeolite Nano Composite and Its Application for VOCs Adsorption
- P37 Synthesis of TiO_2-High Silica Zeolite from Waste Materials and its Photo-Catalytic Properties
- A11 Change in Surface Acidity of Allophane upon P Adsorption and its Mechanism Analysis by Molecular Orbital Method
- A11 Change in surface acidity of allophane upon P adsorption and its Mechanism Analysis by Molecular Orbital Method
- 4-10 Change in Dispersion and Flocculation Properties of Allophane with P adsorption
- A17 Effect of Si/Al ratio of allophane on adsorption of phosphate and oxalate
- P33 Lead adsorption on montmorillonite as affected by coexisting phosphate
- A15 Competitive adsorption of oxalate and phosphate on allophane at low concentration
- 4-7 Competitive Adsorption of Phosphate with Oxalate on Nano-ball Allophane
- A12 Change in Surface Charge Properties of Nano ball Allophane as Influenced by Sulfate Adsorption
- CHARGE CHARACTERISTICS MODIFICATION MECHANISMS OF NANO-BALL ALLOPHANE UPON ORTHOSILICIC ACID ADSORPTION
- CHANGE IN SURFACE CHARGE PROPERTIES OF NANO-BALL ALLOPHANE AS INFLUENCED BY SULFATE ADSORPTION
- A12 CHANGE IN SURFACE CHARGE PROPERTIES OF NANO-BALL ALLOPHANE AS INFLUENCED BY SULFATE ADSORPTION
- ADSORPTION MECHANISMS OF COPPER AND ZINC ON NANO-BALL ALLOPHANE
- 4-13 Effect of Sulfate Adsorption on the Surface Charge Properties of Nano-ball Allophane
- 4-11 Effect of Zinc Adsorption on some Surface Charge Characteristics of Nano-Ball Allophane
- B5 Orthosilicic Acid Adsorptive and Some Surface Property Modification Mechanisms of Nano-Ball allophane
- A15 INCREASE IN PHOSPHATE ADSORPTION BY NANOCOMPOSITE FORMATION OF GOETHITE AND ZEOLITE
- A17 SYNTHESIS OF NANO COMPOSIT ZEOLITE WITH SESQUIOXIDE IN RELATION TO ENVIRONMENTAL POLLUTION REMEDIATION
- A19 Adsorption of water on nano-ball as affected by heat treatments, infrared and X-ray powder diffraction data