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Department of Applied Chemistry and Biochemistry, Kumamoto University | 論文
- Removal of Carbon Dioxide from Air by Pressure Swing Adsorption and Application of Short Cycle Time Approximation
- Performance and Characteristics of a BaO_2-MgO Oxygen Acceptor
- Deterpenation of Bergamot Oil by Pressure Swing Adsorption in Supercritical Carbon Dioxide
- Equilibrium and Reaction Rate of Reversible BaO-BaO_2 Reaction for Oxygen Production
- An Adsorptive Desiccant Cooling Using Honeycomb Rotor Dehumidifier
- Modeling Supercritical Fluid Extraction Process Involving Solute-Solid Interaction
- PERFORMANCE EVALUATION FOR A THERMAL SWING HONEYCOMB ROTOR ADSORBER USING A HUMIDITY CHART
- TEMPERATURE PROFILE AND OPTIMAL ROTATION SPEED OF A HONEYCOMB ROTOR ADSORBER OPERATED WITH THERMAL SWING
- EXPERIMENTAL STUDY OF OPTIMAL OPERATION FOR A HONEYCOMB ADSORBER OPERATED WITH THERMAL SWING
- Enhanced Molecular-Shape Selectivity for Polyaromatic Hydrocarbons through Isotropic-to-Crystalline Phase Transition of Poly(octadecyl acrylate)
- Enhancement of Diastereomer Selectivity Using Highly-Oriented Polymer Stationary Phase
- Enhancement of Isotacticity in Bulk Radical Polymerization of Poly(methyl methacrylate) under Strong Gravity Field
- Selectivity Enhancement for trans-2-(2,3-Anthracenedicarboximido)-cyclohexane-derived Diastereomers in HPLC by Using an Ordered Organic Stationary Phase
- Conformational Effect of Silica-supported Poly(octadecyl acrylate) on Molecular-Shape Selectivity of Polycyclic Aromatic Hydrocarbons in RP-HPLC
- Liquid Chromatography under Limiting Conditions of Desorption IV. Separation of Macromolecules According to Their Stereoregularity
- GRAPE Project : A Decade of Special-Purpose Computers for Many-Body Simulations
- アルカリ溶液中でのTEMPOをメディエーターとしたグルコースのグルカルレートへの電気化学酸化
- Preparation of Dispersible Chitosan Particles with Borate Crosslinking for Antimicrobial and Antifungal Application
- Enhancement of Discrimination Ability for cis- and trans-Decalins through Side-chain Ordering in Comb-shaped Polymer
- Effect of Vacuoles on Viability of Saccharomyces cerevisiae