Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Environmental engineering | |||||
(9:30–10:42) (Chair: Youichi Ishii, Shohei Riya) | |||||
L01 | Development of technology for suppressing sulfide production in sewage flowing process using Microbial Fuel Cell | Microbial fuel cell Sulfate-reducing bacteria Sewer | 13-b | 292 | |
L02 | Chemical analysis of spring water and groundwater in the in the Hachioji and Tama areas and investigation of and investigation of their effects on biomass production | spring water quality biomass production | 13-a | 55 | |
L03 | Development of a simple technique monitoring water content in cement to stabilize polluted soil. | Cement solidification reaction Measuring water content Selenium | 13-c | 108 | |
L04 | A Sutdy on the Effect of Waste Ume Seed Charcoal on Plant Growth | Ume seed Activated carbon Essential nutrition | 13-e | 131 | |
L05 | Fabrication of Microbial Fuel Cells using smoked charcoal (Kyoto Municipal Kyotokogakuin H.S.) *Wakabayashi Satoshi, | Smoked charcoal Microbial fuel cell | 13-f | 315 | |
L06 | Fabrication of colorful Dye-sensitized solar cell (Kyoto Municipal Kyotokogakuin H.S.) *Mizumaki Rikiya, | Dye-sensitized solar cell coloring pigment | 13-f | 314 | |
Break | |||||
Electronics | |||||
(10:50–12:02) (Chair: Yuuki Johno, Tatsuo Maruyama) | |||||
L08 | Electrochemical Characterization of a Magnesium Complex Oxide Anode | Magnesium lon Batteries Magnesium Complex Oxide Anode Material | 11-a | 216 | |
L09 | Fundamental Characterization of Microbial Batteries Using Pond Mud. | Microorganisms Generation of Electricity Batteries | 11-a | 218 | |
L10 | (withdrawn) | 100 | 182 | ||
L11 | Prediction of internal battery phenomena by non-destructive measurement, modeling and machine learning | non-destructive measurement modeling machine learning | 9-a | 286 | |
L12 | Preventing polarization of Voltaic battery by hydrogen storage metals | Voltaic battery Nickel plating Hydrogen storage metals | 11-a | 53 | |
L13 | Solar cells using supramolecular dyes that can be attached anywhere | Dye-sensitized solar cell Supramolecular dye Rhodamine B | 11-a | 22 | |
Lunch break | |||||
Electronics | |||||
(13:00–14:12) (Chair: Kazuhiro Takeda, Nobuko Hanada) | |||||
L19 | Fabrication of Photo-capacitor electrode using layered manganese oxide consisting with two-type metal complexes on bamboo/CNT substrate | Manganese oxide Capacitor material Transition metal complex PW | 9-e | 80 | |
L20 | Development of electric energy storage device utilizing hybrid MnO2 with Co complex and lipid as interlayer ions | Layered MnO2 Metal complex Capacitance | 11-a | 64 | |
L21 | Effects of Substrate Surface Conditions on the Production of Ph-BTBT-10 Thin Films by Rapid Expansion of Supercritical Solutions (RESS) Using CO2 | RESS Organic thin films Substrate surface conditions | 11-b | 153 | |
L22 | Experiment to operate radio and led lamp at the time of a blackout using an electric double layer condenser | Blackout Relay Electric double-layer capacitor | 11-a | 251 | |
L23 | Research on hypochlorite acid water generator that can be used even in the happening of a disaster | hypochlorite acid water disaster electrolysis | 11-a | 86 | |
L24 | Development of dye-sensitized solar cells using chalk made of calcium carbonate | solar cell dye chalk | 11-f | 8 | |
Break | |||||
Environmental engineering | |||||
(14:20–15:44) (Chair: Shoji Ryo, Tomohide Watanabe) | |||||
L26 | Decomposition of volatile organic compounds by metal ion-modified titanium oxide nanoparticles | 酸化チタン 揮発性有機化合物 分解 | 13-i | 288 | |
L27 | Performance evaluation of amino-functionalized SBA-15 and nitrided SBA-15 as CO2 adsorbents | amino-functionalized mesoporous silica carbon dioxide capture and storage FT-IR spectroscopy | 13-g | 102 | |
L28 | Separation of Microplastics using Fine Bubble flotation | Fine Bubble Microplastic Flotation | 13-a | 195 | |
L29 | Formaldehyde degradation by immobilized formaldehyde dismutase | Formaldehyde dismutase Immobilization Immobilized metal affinity(IMA) resin | 13-b | 118 | |
L30 | synthesis of alkaline cleaning agent from Na2CO3~aiming for the recycling of used dipers~ | bubbling sesqui anti-solvent | 13-e | 33 | |
L31 | Relationship between the degree of ink stain removal and pH | washing ballpoint pen ink pH | 13-i | 256 | |
L32 | Conditions to change pond and muddy water into safe water | water hardness COD | 13-i | 266 |